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139 lines
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139 lines
5.5 KiB
Plaintext
===================================
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How to write a custom storage class
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===================================
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.. currentmodule:: django.core.files.storage
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If you need to provide custom file storage -- a common example is storing files
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on some remote system -- you can do so by defining a custom storage class.
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You'll need to follow these steps:
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#. Your custom storage system must be a subclass of
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``django.core.files.storage.Storage``::
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from django.core.files.storage import Storage
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class MyStorage(Storage):
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...
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#. Django must be able to instantiate your storage system without any arguments.
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This means that any settings should be taken from ``django.conf.settings``::
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from django.conf import settings
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from django.core.files.storage import Storage
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class MyStorage(Storage):
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def __init__(self, option=None):
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if not option:
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option = settings.CUSTOM_STORAGE_OPTIONS
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...
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#. Your storage class must implement the :meth:`_open()` and :meth:`_save()`
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methods, along with any other methods appropriate to your storage class. See
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below for more on these methods.
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In addition, if your class provides local file storage, it must override
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the ``path()`` method.
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#. Your storage class must be :ref:`deconstructible <custom-deconstruct-method>`
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so it can be serialized when it's used on a field in a migration. As long
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as your field has arguments that are themselves
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:ref:`serializable <migration-serializing>`, you can use the
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``django.utils.deconstruct.deconstructible`` class decorator for this
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(that's what Django uses on FileSystemStorage).
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By default, the following methods raise ``NotImplementedError`` and will
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typically have to be overridden:
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* :meth:`Storage.delete`
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* :meth:`Storage.exists`
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* :meth:`Storage.listdir`
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* :meth:`Storage.size`
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* :meth:`Storage.url`
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Note however that not all these methods are required and may be deliberately
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omitted. As it happens, it is possible to leave each method unimplemented and
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still have a working Storage.
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By way of example, if listing the contents of certain storage backends turns
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out to be expensive, you might decide not to implement ``Storage.listdir()``.
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Another example would be a backend that only handles writing to files. In this
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case, you would not need to implement any of the above methods.
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Ultimately, which of these methods are implemented is up to you. Leaving some
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methods unimplemented will result in a partial (possibly broken) interface.
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You'll also usually want to use hooks specifically designed for custom storage
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objects. These are:
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.. method:: _open(name, mode='rb')
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**Required**.
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Called by ``Storage.open()``, this is the actual mechanism the storage class
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uses to open the file. This must return a ``File`` object, though in most cases,
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you'll want to return some subclass here that implements logic specific to the
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backend storage system.
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.. method:: _save(name, content)
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Called by ``Storage.save()``. The ``name`` will already have gone through
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``get_valid_name()`` and ``get_available_name()``, and the ``content`` will be a
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``File`` object itself.
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Should return the actual name of name of the file saved (usually the ``name``
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passed in, but if the storage needs to change the file name return the new name
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instead).
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.. method:: get_valid_name(name)
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Returns a filename suitable for use with the underlying storage system. The
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``name`` argument passed to this method is either the original filename sent to
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the server or, if ``upload_to`` is a callable, the filename returned by that
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method after any path information is removed. Override this to customize how
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non-standard characters are converted to safe filenames.
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The code provided on ``Storage`` retains only alpha-numeric characters, periods
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and underscores from the original filename, removing everything else.
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.. method:: get_alternative_name(file_root, file_ext)
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Returns an alternative filename based on the ``file_root`` and ``file_ext``
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parameters. By default, an underscore plus a random 7 character alphanumeric
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string is appended to the filename before the extension.
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.. method:: get_available_name(name, max_length=None)
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Returns a filename that is available in the storage mechanism, possibly taking
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the provided filename into account. The ``name`` argument passed to this method
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will have already cleaned to a filename valid for the storage system, according
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to the ``get_valid_name()`` method described above.
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The length of the filename will not exceed ``max_length``, if provided. If a
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free unique filename cannot be found, a :exc:`SuspiciousFileOperation
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<django.core.exceptions.SuspiciousOperation>` exception is raised.
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If a file with ``name`` already exists, ``get_alternative_name()`` is called to
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obtain an alternative name.
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.. _using-custom-storage-engine:
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Use your custom storage engine
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==============================
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.. versionadded:: 4.2
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The first step to using your custom storage with Django is to tell Django about
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the file storage backend you'll be using. This is done using the
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:setting:`STORAGES` setting. This setting maps storage aliases, which are a way
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to refer to a specific storage throughout Django, to a dictionary of settings
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for that specific storage backend. The settings in the inner dictionaries are
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described fully in the :setting:`STORAGES` documentation.
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Storages are then accessed by alias from from the
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:data:`django.core.files.storage.storages` dictionary::
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from django.core.files.storage import storages
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example_storage = storages["example"]
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