mirror of https://github.com/morpheus65535/bazarr
761 lines
24 KiB
Python
761 lines
24 KiB
Python
"""Container and Namespace classes"""
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import errno
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from ._compat import pickle, anydbm, add_metaclass, PYVER, unicode_text
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import beaker.util as util
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import logging
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import os
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import time
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from beaker.exceptions import CreationAbortedError, MissingCacheParameter
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from beaker.synchronization import _threading, file_synchronizer, \
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mutex_synchronizer, NameLock, null_synchronizer
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__all__ = ['Value', 'Container', 'ContainerContext',
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'MemoryContainer', 'DBMContainer', 'NamespaceManager',
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'MemoryNamespaceManager', 'DBMNamespaceManager', 'FileContainer',
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'OpenResourceNamespaceManager',
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'FileNamespaceManager', 'CreationAbortedError']
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logger = logging.getLogger('beaker.container')
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if logger.isEnabledFor(logging.DEBUG):
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debug = logger.debug
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else:
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def debug(message, *args):
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pass
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class NamespaceManager(object):
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"""Handles dictionary operations and locking for a namespace of
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values.
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:class:`.NamespaceManager` provides a dictionary-like interface,
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implementing ``__getitem__()``, ``__setitem__()``, and
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``__contains__()``, as well as functions related to lock
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acquisition.
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The implementation for setting and retrieving the namespace data is
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handled by subclasses.
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NamespaceManager may be used alone, or may be accessed by
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one or more :class:`.Value` objects. :class:`.Value` objects provide per-key
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services like expiration times and automatic recreation of values.
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Multiple NamespaceManagers created with a particular name will all
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share access to the same underlying datasource and will attempt to
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synchronize against a common mutex object. The scope of this
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sharing may be within a single process or across multiple
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processes, depending on the type of NamespaceManager used.
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The NamespaceManager itself is generally threadsafe, except in the
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case of the DBMNamespaceManager in conjunction with the gdbm dbm
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implementation.
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"""
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@classmethod
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def _init_dependencies(cls):
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"""Initialize module-level dependent libraries required
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by this :class:`.NamespaceManager`."""
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def __init__(self, namespace):
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self._init_dependencies()
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self.namespace = namespace
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def get_creation_lock(self, key):
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"""Return a locking object that is used to synchronize
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multiple threads or processes which wish to generate a new
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cache value.
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This function is typically an instance of
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:class:`.FileSynchronizer`, :class:`.ConditionSynchronizer`,
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or :class:`.null_synchronizer`.
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The creation lock is only used when a requested value
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does not exist, or has been expired, and is only used
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by the :class:`.Value` key-management object in conjunction
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with a "createfunc" value-creation function.
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"""
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raise NotImplementedError()
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def do_remove(self):
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"""Implement removal of the entire contents of this
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:class:`.NamespaceManager`.
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e.g. for a file-based namespace, this would remove
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all the files.
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The front-end to this method is the
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:meth:`.NamespaceManager.remove` method.
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"""
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raise NotImplementedError()
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def acquire_read_lock(self):
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"""Establish a read lock.
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This operation is called before a key is read. By
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default the function does nothing.
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"""
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def release_read_lock(self):
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"""Release a read lock.
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This operation is called after a key is read. By
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default the function does nothing.
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"""
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def acquire_write_lock(self, wait=True, replace=False):
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"""Establish a write lock.
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This operation is called before a key is written.
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A return value of ``True`` indicates the lock has
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been acquired.
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By default the function returns ``True`` unconditionally.
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'replace' is a hint indicating the full contents
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of the namespace may be safely discarded. Some backends
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may implement this (i.e. file backend won't unpickle the
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current contents).
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"""
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return True
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def release_write_lock(self):
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"""Release a write lock.
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This operation is called after a new value is written.
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By default this function does nothing.
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"""
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def has_key(self, key):
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"""Return ``True`` if the given key is present in this
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:class:`.Namespace`.
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"""
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return self.__contains__(key)
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def __getitem__(self, key):
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raise NotImplementedError()
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def __setitem__(self, key, value):
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raise NotImplementedError()
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def set_value(self, key, value, expiretime=None):
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"""Sets a value in this :class:`.NamespaceManager`.
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This is the same as ``__setitem__()``, but
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also allows an expiration time to be passed
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at the same time.
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"""
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self[key] = value
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def __contains__(self, key):
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raise NotImplementedError()
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def __delitem__(self, key):
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raise NotImplementedError()
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def keys(self):
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"""Return the list of all keys.
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This method may not be supported by all
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:class:`.NamespaceManager` implementations.
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"""
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raise NotImplementedError()
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def remove(self):
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"""Remove the entire contents of this
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:class:`.NamespaceManager`.
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e.g. for a file-based namespace, this would remove
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all the files.
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"""
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self.do_remove()
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class OpenResourceNamespaceManager(NamespaceManager):
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"""A NamespaceManager where read/write operations require opening/
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closing of a resource which is possibly mutexed.
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"""
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def __init__(self, namespace):
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NamespaceManager.__init__(self, namespace)
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self.access_lock = self.get_access_lock()
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self.openers = 0
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self.mutex = _threading.Lock()
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def get_access_lock(self):
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raise NotImplementedError()
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def do_open(self, flags, replace):
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raise NotImplementedError()
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def do_close(self):
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raise NotImplementedError()
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def acquire_read_lock(self):
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self.access_lock.acquire_read_lock()
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try:
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self.open('r', checkcount=True)
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except:
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self.access_lock.release_read_lock()
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raise
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def release_read_lock(self):
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try:
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self.close(checkcount=True)
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finally:
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self.access_lock.release_read_lock()
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def acquire_write_lock(self, wait=True, replace=False):
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r = self.access_lock.acquire_write_lock(wait)
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try:
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if (wait or r):
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self.open('c', checkcount=True, replace=replace)
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return r
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except:
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self.access_lock.release_write_lock()
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raise
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def release_write_lock(self):
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try:
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self.close(checkcount=True)
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finally:
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self.access_lock.release_write_lock()
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def open(self, flags, checkcount=False, replace=False):
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self.mutex.acquire()
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try:
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if checkcount:
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if self.openers == 0:
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self.do_open(flags, replace)
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self.openers += 1
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else:
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self.do_open(flags, replace)
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self.openers = 1
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finally:
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self.mutex.release()
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def close(self, checkcount=False):
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self.mutex.acquire()
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try:
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if checkcount:
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self.openers -= 1
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if self.openers == 0:
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self.do_close()
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else:
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if self.openers > 0:
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self.do_close()
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self.openers = 0
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finally:
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self.mutex.release()
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def remove(self):
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self.access_lock.acquire_write_lock()
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try:
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self.close(checkcount=False)
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self.do_remove()
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finally:
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self.access_lock.release_write_lock()
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class Value(object):
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"""Implements synchronization, expiration, and value-creation logic
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for a single value stored in a :class:`.NamespaceManager`.
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"""
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__slots__ = 'key', 'createfunc', 'expiretime', 'expire_argument', 'starttime', 'storedtime',\
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'namespace'
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def __init__(self, key, namespace, createfunc=None, expiretime=None, starttime=None):
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self.key = key
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self.createfunc = createfunc
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self.expire_argument = expiretime
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self.starttime = starttime
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self.storedtime = -1
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self.namespace = namespace
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def has_value(self):
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"""return true if the container has a value stored.
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This is regardless of it being expired or not.
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"""
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self.namespace.acquire_read_lock()
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try:
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return self.key in self.namespace
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finally:
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self.namespace.release_read_lock()
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def can_have_value(self):
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return self.has_current_value() or self.createfunc is not None
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def has_current_value(self):
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self.namespace.acquire_read_lock()
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try:
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has_value = self.key in self.namespace
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if has_value:
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try:
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stored, expired, value = self._get_value()
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return not self._is_expired(stored, expired)
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except KeyError:
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pass
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return False
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finally:
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self.namespace.release_read_lock()
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def _is_expired(self, storedtime, expiretime):
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"""Return true if this container's value is expired."""
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return (
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(
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self.starttime is not None and
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storedtime < self.starttime
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)
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or
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(
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expiretime is not None and
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time.time() >= expiretime + storedtime
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)
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)
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def get_value(self):
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self.namespace.acquire_read_lock()
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try:
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has_value = self.has_value()
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if has_value:
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try:
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stored, expired, value = self._get_value()
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if not self._is_expired(stored, expired):
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return value
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except KeyError:
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# guard against un-mutexed backends raising KeyError
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has_value = False
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if not self.createfunc:
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raise KeyError(self.key)
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finally:
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self.namespace.release_read_lock()
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has_createlock = False
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creation_lock = self.namespace.get_creation_lock(self.key)
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if has_value:
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if not creation_lock.acquire(wait=False):
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debug("get_value returning old value while new one is created")
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return value
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else:
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debug("lock_creatfunc (didnt wait)")
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has_createlock = True
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if not has_createlock:
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debug("lock_createfunc (waiting)")
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creation_lock.acquire()
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debug("lock_createfunc (waited)")
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try:
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# see if someone created the value already
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self.namespace.acquire_read_lock()
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try:
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if self.has_value():
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try:
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stored, expired, value = self._get_value()
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if not self._is_expired(stored, expired):
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return value
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except KeyError:
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# guard against un-mutexed backends raising KeyError
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pass
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finally:
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self.namespace.release_read_lock()
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debug("get_value creating new value")
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v = self.createfunc()
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self.set_value(v)
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return v
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finally:
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creation_lock.release()
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debug("released create lock")
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def _get_value(self):
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value = self.namespace[self.key]
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try:
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stored, expired, value = value
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except ValueError:
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if not len(value) == 2:
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raise
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# Old format: upgrade
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stored, value = value
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expired = self.expire_argument
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debug("get_value upgrading time %r expire time %r", stored, self.expire_argument)
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self.namespace.release_read_lock()
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self.set_value(value, stored)
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self.namespace.acquire_read_lock()
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except TypeError:
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# occurs when the value is None. memcached
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# may yank the rug from under us in which case
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# that's the result
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raise KeyError(self.key)
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return stored, expired, value
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def set_value(self, value, storedtime=None):
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self.namespace.acquire_write_lock()
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try:
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if storedtime is None:
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storedtime = time.time()
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debug("set_value stored time %r expire time %r", storedtime, self.expire_argument)
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self.namespace.set_value(self.key, (storedtime, self.expire_argument, value),
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expiretime=self.expire_argument)
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finally:
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self.namespace.release_write_lock()
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def clear_value(self):
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self.namespace.acquire_write_lock()
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try:
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debug("clear_value")
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if self.key in self.namespace:
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try:
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del self.namespace[self.key]
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except KeyError:
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# guard against un-mutexed backends raising KeyError
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pass
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self.storedtime = -1
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finally:
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self.namespace.release_write_lock()
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class AbstractDictionaryNSManager(NamespaceManager):
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"""A subclassable NamespaceManager that places data in a dictionary.
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Subclasses should provide a "dictionary" attribute or descriptor
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which returns a dict-like object. The dictionary will store keys
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that are local to the "namespace" attribute of this manager, so
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ensure that the dictionary will not be used by any other namespace.
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e.g.::
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import collections
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cached_data = collections.defaultdict(dict)
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class MyDictionaryManager(AbstractDictionaryNSManager):
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def __init__(self, namespace):
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AbstractDictionaryNSManager.__init__(self, namespace)
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self.dictionary = cached_data[self.namespace]
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The above stores data in a global dictionary called "cached_data",
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which is structured as a dictionary of dictionaries, keyed
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first on namespace name to a sub-dictionary, then on actual
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cache key to value.
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"""
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def get_creation_lock(self, key):
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return NameLock(
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identifier="memorynamespace/funclock/%s/%s" %
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(self.namespace, key),
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reentrant=True
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)
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def __getitem__(self, key):
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return self.dictionary[key]
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def __contains__(self, key):
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return self.dictionary.__contains__(key)
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def has_key(self, key):
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return self.dictionary.__contains__(key)
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def __setitem__(self, key, value):
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self.dictionary[key] = value
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def __delitem__(self, key):
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del self.dictionary[key]
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def do_remove(self):
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self.dictionary.clear()
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def keys(self):
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return self.dictionary.keys()
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class MemoryNamespaceManager(AbstractDictionaryNSManager):
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""":class:`.NamespaceManager` that uses a Python dictionary for storage."""
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namespaces = util.SyncDict()
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def __init__(self, namespace, **kwargs):
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AbstractDictionaryNSManager.__init__(self, namespace)
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self.dictionary = MemoryNamespaceManager.\
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namespaces.get(self.namespace, dict)
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class DBMNamespaceManager(OpenResourceNamespaceManager):
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""":class:`.NamespaceManager` that uses ``dbm`` files for storage."""
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def __init__(self, namespace, dbmmodule=None, data_dir=None,
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dbm_dir=None, lock_dir=None,
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digest_filenames=True, **kwargs):
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self.digest_filenames = digest_filenames
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if not dbm_dir and not data_dir:
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raise MissingCacheParameter("data_dir or dbm_dir is required")
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elif dbm_dir:
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self.dbm_dir = dbm_dir
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else:
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self.dbm_dir = data_dir + "/container_dbm"
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util.verify_directory(self.dbm_dir)
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if not lock_dir and not data_dir:
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raise MissingCacheParameter("data_dir or lock_dir is required")
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elif lock_dir:
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self.lock_dir = lock_dir
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else:
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self.lock_dir = data_dir + "/container_dbm_lock"
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util.verify_directory(self.lock_dir)
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self.dbmmodule = dbmmodule or anydbm
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self.dbm = None
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OpenResourceNamespaceManager.__init__(self, namespace)
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self.file = util.encoded_path(root=self.dbm_dir,
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identifiers=[self.namespace],
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extension='.dbm',
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digest_filenames=self.digest_filenames)
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debug("data file %s", self.file)
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self._checkfile()
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def get_access_lock(self):
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return file_synchronizer(identifier=self.namespace,
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lock_dir=self.lock_dir)
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def get_creation_lock(self, key):
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return file_synchronizer(
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identifier="dbmcontainer/funclock/%s/%s" % (
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self.namespace, key
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),
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lock_dir=self.lock_dir
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)
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def file_exists(self, file):
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if os.access(file, os.F_OK):
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return True
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else:
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for ext in ('db', 'dat', 'pag', 'dir'):
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if os.access(file + os.extsep + ext, os.F_OK):
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return True
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return False
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def _ensuredir(self, filename):
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dirname = os.path.dirname(filename)
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if not os.path.exists(dirname):
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util.verify_directory(dirname)
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def _checkfile(self):
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if not self.file_exists(self.file):
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self._ensuredir(self.file)
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g = self.dbmmodule.open(self.file, 'c')
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g.close()
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def get_filenames(self):
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list = []
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if os.access(self.file, os.F_OK):
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list.append(self.file)
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for ext in ('pag', 'dir', 'db', 'dat'):
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if os.access(self.file + os.extsep + ext, os.F_OK):
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|
list.append(self.file + os.extsep + ext)
|
|
return list
|
|
|
|
def do_open(self, flags, replace):
|
|
debug("opening dbm file %s", self.file)
|
|
try:
|
|
self.dbm = self.dbmmodule.open(self.file, flags)
|
|
except:
|
|
self._checkfile()
|
|
self.dbm = self.dbmmodule.open(self.file, flags)
|
|
|
|
def do_close(self):
|
|
if self.dbm is not None:
|
|
debug("closing dbm file %s", self.file)
|
|
self.dbm.close()
|
|
|
|
def do_remove(self):
|
|
for f in self.get_filenames():
|
|
os.remove(f)
|
|
|
|
def __getitem__(self, key):
|
|
return pickle.loads(self.dbm[key])
|
|
|
|
def __contains__(self, key):
|
|
if PYVER == (3, 2):
|
|
# Looks like this is a bug that got solved in PY3.3 and PY3.4
|
|
# http://bugs.python.org/issue19288
|
|
if isinstance(key, unicode_text):
|
|
key = key.encode('UTF-8')
|
|
return key in self.dbm
|
|
|
|
def __setitem__(self, key, value):
|
|
self.dbm[key] = pickle.dumps(value)
|
|
|
|
def __delitem__(self, key):
|
|
del self.dbm[key]
|
|
|
|
def keys(self):
|
|
return self.dbm.keys()
|
|
|
|
|
|
class FileNamespaceManager(OpenResourceNamespaceManager):
|
|
""":class:`.NamespaceManager` that uses binary files for storage.
|
|
|
|
Each namespace is implemented as a single file storing a
|
|
dictionary of key/value pairs, serialized using the Python
|
|
``pickle`` module.
|
|
|
|
"""
|
|
def __init__(self, namespace, data_dir=None, file_dir=None, lock_dir=None,
|
|
digest_filenames=True, **kwargs):
|
|
self.digest_filenames = digest_filenames
|
|
|
|
if not file_dir and not data_dir:
|
|
raise MissingCacheParameter("data_dir or file_dir is required")
|
|
elif file_dir:
|
|
self.file_dir = file_dir
|
|
else:
|
|
self.file_dir = data_dir + "/container_file"
|
|
util.verify_directory(self.file_dir)
|
|
|
|
if not lock_dir and not data_dir:
|
|
raise MissingCacheParameter("data_dir or lock_dir is required")
|
|
elif lock_dir:
|
|
self.lock_dir = lock_dir
|
|
else:
|
|
self.lock_dir = data_dir + "/container_file_lock"
|
|
util.verify_directory(self.lock_dir)
|
|
OpenResourceNamespaceManager.__init__(self, namespace)
|
|
|
|
self.file = util.encoded_path(root=self.file_dir,
|
|
identifiers=[self.namespace],
|
|
extension='.cache',
|
|
digest_filenames=self.digest_filenames)
|
|
self.hash = {}
|
|
|
|
debug("data file %s", self.file)
|
|
|
|
def get_access_lock(self):
|
|
return file_synchronizer(identifier=self.namespace,
|
|
lock_dir=self.lock_dir)
|
|
|
|
def get_creation_lock(self, key):
|
|
return file_synchronizer(
|
|
identifier="dbmcontainer/funclock/%s/%s" % (
|
|
self.namespace, key
|
|
),
|
|
lock_dir=self.lock_dir
|
|
)
|
|
|
|
def file_exists(self, file):
|
|
return os.access(file, os.F_OK)
|
|
|
|
def do_open(self, flags, replace):
|
|
if not replace and self.file_exists(self.file):
|
|
try:
|
|
with open(self.file, 'rb') as fh:
|
|
self.hash = pickle.load(fh)
|
|
except IOError as e:
|
|
# Ignore EACCES and ENOENT as it just means we are no longer
|
|
# able to access the file or that it no longer exists
|
|
if e.errno not in [errno.EACCES, errno.ENOENT]:
|
|
raise
|
|
|
|
self.flags = flags
|
|
|
|
def do_close(self):
|
|
if self.flags == 'c' or self.flags == 'w':
|
|
pickled = pickle.dumps(self.hash)
|
|
util.safe_write(self.file, pickled)
|
|
|
|
self.hash = {}
|
|
self.flags = None
|
|
|
|
def do_remove(self):
|
|
try:
|
|
os.remove(self.file)
|
|
except OSError:
|
|
# for instance, because we haven't yet used this cache,
|
|
# but client code has asked for a clear() operation...
|
|
pass
|
|
self.hash = {}
|
|
|
|
def __getitem__(self, key):
|
|
return self.hash[key]
|
|
|
|
def __contains__(self, key):
|
|
return key in self.hash
|
|
|
|
def __setitem__(self, key, value):
|
|
self.hash[key] = value
|
|
|
|
def __delitem__(self, key):
|
|
del self.hash[key]
|
|
|
|
def keys(self):
|
|
return self.hash.keys()
|
|
|
|
|
|
#### legacy stuff to support the old "Container" class interface
|
|
|
|
namespace_classes = {}
|
|
|
|
ContainerContext = dict
|
|
|
|
|
|
class ContainerMeta(type):
|
|
def __init__(cls, classname, bases, dict_):
|
|
namespace_classes[cls] = cls.namespace_class
|
|
return type.__init__(cls, classname, bases, dict_)
|
|
|
|
def __call__(self, key, context, namespace, createfunc=None,
|
|
expiretime=None, starttime=None, **kwargs):
|
|
if namespace in context:
|
|
ns = context[namespace]
|
|
else:
|
|
nscls = namespace_classes[self]
|
|
context[namespace] = ns = nscls(namespace, **kwargs)
|
|
return Value(key, ns, createfunc=createfunc,
|
|
expiretime=expiretime, starttime=starttime)
|
|
|
|
@add_metaclass(ContainerMeta)
|
|
class Container(object):
|
|
"""Implements synchronization and value-creation logic
|
|
for a 'value' stored in a :class:`.NamespaceManager`.
|
|
|
|
:class:`.Container` and its subclasses are deprecated. The
|
|
:class:`.Value` class is now used for this purpose.
|
|
|
|
"""
|
|
namespace_class = NamespaceManager
|
|
|
|
|
|
class FileContainer(Container):
|
|
namespace_class = FileNamespaceManager
|
|
|
|
|
|
class MemoryContainer(Container):
|
|
namespace_class = MemoryNamespaceManager
|
|
|
|
|
|
class DBMContainer(Container):
|
|
namespace_class = DBMNamespaceManager
|
|
|
|
DbmContainer = DBMContainer
|