mirror of https://github.com/python/cpython
1490 lines
52 KiB
ReStructuredText
1490 lines
52 KiB
ReStructuredText
:mod:`importlib` --- The implementation of :keyword:`import`
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============================================================
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.. module:: importlib
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:synopsis: The implementation of the import machinery.
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.. moduleauthor:: Brett Cannon <brett@python.org>
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.. sectionauthor:: Brett Cannon <brett@python.org>
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.. versionadded:: 3.1
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**Source code:** :source:`Lib/importlib/__init__.py`
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--------------
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Introduction
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------------
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The purpose of the :mod:`importlib` package is two-fold. One is to provide the
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implementation of the :keyword:`import` statement (and thus, by extension, the
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:func:`__import__` function) in Python source code. This provides an
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implementation of :keyword:`import` which is portable to any Python
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interpreter. This also provides an implementation which is easier to
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comprehend than one implemented in a programming language other than Python.
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Two, the components to implement :keyword:`import` are exposed in this
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package, making it easier for users to create their own custom objects (known
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generically as an :term:`importer`) to participate in the import process.
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.. seealso::
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:ref:`import`
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The language reference for the :keyword:`import` statement.
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`Packages specification <http://legacy.python.org/doc/essays/packages.html>`__
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Original specification of packages. Some semantics have changed since
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the writing of this document (e.g. redirecting based on ``None``
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in :data:`sys.modules`).
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The :func:`.__import__` function
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The :keyword:`import` statement is syntactic sugar for this function.
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:pep:`235`
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Import on Case-Insensitive Platforms
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:pep:`263`
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Defining Python Source Code Encodings
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:pep:`302`
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New Import Hooks
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:pep:`328`
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Imports: Multi-Line and Absolute/Relative
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:pep:`366`
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Main module explicit relative imports
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:pep:`420`
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Implicit namespace packages
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:pep:`451`
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A ModuleSpec Type for the Import System
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:pep:`488`
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Elimination of PYO files
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:pep:`489`
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Multi-phase extension module initialization
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:pep:`3120`
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Using UTF-8 as the Default Source Encoding
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:pep:`3147`
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PYC Repository Directories
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Functions
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---------
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.. function:: __import__(name, globals=None, locals=None, fromlist=(), level=0)
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An implementation of the built-in :func:`__import__` function.
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.. note::
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Programmatic importing of modules should use :func:`import_module`
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instead of this function.
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.. function:: import_module(name, package=None)
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Import a module. The *name* argument specifies what module to
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import in absolute or relative terms
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(e.g. either ``pkg.mod`` or ``..mod``). If the name is
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specified in relative terms, then the *package* argument must be set to
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the name of the package which is to act as the anchor for resolving the
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package name (e.g. ``import_module('..mod', 'pkg.subpkg')`` will import
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``pkg.mod``).
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The :func:`import_module` function acts as a simplifying wrapper around
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:func:`importlib.__import__`. This means all semantics of the function are
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derived from :func:`importlib.__import__`. The most important difference
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between these two functions is that :func:`import_module` returns the
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specified package or module (e.g. ``pkg.mod``), while :func:`__import__`
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returns the top-level package or module (e.g. ``pkg``).
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If you are dynamically importing a module that was created since the
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interpreter began execution (e.g., created a Python source file), you may
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need to call :func:`invalidate_caches` in order for the new module to be
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noticed by the import system.
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.. versionchanged:: 3.3
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Parent packages are automatically imported.
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.. function:: find_loader(name, path=None)
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Find the loader for a module, optionally within the specified *path*. If the
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module is in :attr:`sys.modules`, then ``sys.modules[name].__loader__`` is
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returned (unless the loader would be ``None`` or is not set, in which case
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:exc:`ValueError` is raised). Otherwise a search using :attr:`sys.meta_path`
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is done. ``None`` is returned if no loader is found.
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A dotted name does not have its parents implicitly imported as that requires
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loading them and that may not be desired. To properly import a submodule you
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will need to import all parent packages of the submodule and use the correct
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argument to *path*.
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.. versionadded:: 3.3
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.. versionchanged:: 3.4
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If ``__loader__`` is not set, raise :exc:`ValueError`, just like when the
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attribute is set to ``None``.
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.. deprecated:: 3.4
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Use :func:`importlib.util.find_spec` instead.
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.. function:: invalidate_caches()
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Invalidate the internal caches of finders stored at
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:data:`sys.meta_path`. If a finder implements ``invalidate_caches()`` then it
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will be called to perform the invalidation. This function should be called
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if any modules are created/installed while your program is running to
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guarantee all finders will notice the new module's existence.
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.. versionadded:: 3.3
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.. function:: reload(module)
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Reload a previously imported *module*. The argument must be a module object,
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so it must have been successfully imported before. This is useful if you
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have edited the module source file using an external editor and want to try
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out the new version without leaving the Python interpreter. The return value
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is the module object (which can be different if re-importing causes a
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different object to be placed in :data:`sys.modules`).
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When :func:`reload` is executed:
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* Python module's code is recompiled and the module-level code re-executed,
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defining a new set of objects which are bound to names in the module's
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dictionary by reusing the :term:`loader` which originally loaded the
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module. The ``init`` function of extension modules is not called a second
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time.
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* As with all other objects in Python the old objects are only reclaimed
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after their reference counts drop to zero.
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* The names in the module namespace are updated to point to any new or
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changed objects.
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* Other references to the old objects (such as names external to the module) are
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not rebound to refer to the new objects and must be updated in each namespace
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where they occur if that is desired.
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There are a number of other caveats:
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When a module is reloaded, its dictionary (containing the module's global
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variables) is retained. Redefinitions of names will override the old
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definitions, so this is generally not a problem. If the new version of a
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module does not define a name that was defined by the old version, the old
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definition remains. This feature can be used to the module's advantage if it
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maintains a global table or cache of objects --- with a :keyword:`try`
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statement it can test for the table's presence and skip its initialization if
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desired::
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try:
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cache
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except NameError:
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cache = {}
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It is generally not very useful to reload built-in or dynamically loaded
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modules. Reloading :mod:`sys`, :mod:`__main__`, :mod:`builtins` and other
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key modules is not recommended. In many cases extension modules are not
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designed to be initialized more than once, and may fail in arbitrary ways
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when reloaded.
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If a module imports objects from another module using :keyword:`from` ...
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:keyword:`import` ..., calling :func:`reload` for the other module does not
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redefine the objects imported from it --- one way around this is to
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re-execute the :keyword:`from` statement, another is to use :keyword:`import`
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and qualified names (*module.name*) instead.
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If a module instantiates instances of a class, reloading the module that
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defines the class does not affect the method definitions of the instances ---
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they continue to use the old class definition. The same is true for derived
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classes.
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.. versionadded:: 3.4
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:mod:`importlib.abc` -- Abstract base classes related to import
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---------------------------------------------------------------
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.. module:: importlib.abc
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:synopsis: Abstract base classes related to import
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**Source code:** :source:`Lib/importlib/abc.py`
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--------------
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The :mod:`importlib.abc` module contains all of the core abstract base classes
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used by :keyword:`import`. Some subclasses of the core abstract base classes
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are also provided to help in implementing the core ABCs.
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ABC hierarchy::
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object
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+-- Finder (deprecated)
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| +-- MetaPathFinder
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| +-- PathEntryFinder
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+-- Loader
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+-- ResourceLoader --------+
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+-- InspectLoader |
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+-- ExecutionLoader --+
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+-- FileLoader
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+-- SourceLoader
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.. class:: Finder
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An abstract base class representing a :term:`finder`.
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.. deprecated:: 3.3
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Use :class:`MetaPathFinder` or :class:`PathEntryFinder` instead.
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.. abstractmethod:: find_module(fullname, path=None)
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An abstact method for finding a :term:`loader` for the specified
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module. Originally specified in :pep:`302`, this method was meant
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for use in :data:`sys.meta_path` and in the path-based import subsystem.
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.. versionchanged:: 3.4
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Returns ``None`` when called instead of raising
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:exc:`NotImplementedError`.
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.. class:: MetaPathFinder
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An abstract base class representing a :term:`meta path finder`. For
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compatibility, this is a subclass of :class:`Finder`.
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.. versionadded:: 3.3
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.. method:: find_spec(fullname, path, target=None)
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An abstract method for finding a :term:`spec <module spec>` for
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the specified module. If this is a top-level import, *path* will
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be ``None``. Otherwise, this is a search for a subpackage or
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module and *path* will be the value of :attr:`__path__` from the
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parent package. If a spec cannot be found, ``None`` is returned.
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When passed in, ``target`` is a module object that the finder may
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use to make a more educated guess about what spec to return.
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.. versionadded:: 3.4
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.. method:: find_module(fullname, path)
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A legacy method for finding a :term:`loader` for the specified
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module. If this is a top-level import, *path* will be ``None``.
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Otherwise, this is a search for a subpackage or module and *path*
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will be the value of :attr:`__path__` from the parent
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package. If a loader cannot be found, ``None`` is returned.
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If :meth:`find_spec` is defined, backwards-compatible functionality is
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provided.
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.. versionchanged:: 3.4
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Returns ``None`` when called instead of raising
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:exc:`NotImplementedError`. Can use :meth:`find_spec` to provide
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functionality.
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.. deprecated:: 3.4
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Use :meth:`find_spec` instead.
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.. method:: invalidate_caches()
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An optional method which, when called, should invalidate any internal
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cache used by the finder. Used by :func:`importlib.invalidate_caches`
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when invalidating the caches of all finders on :data:`sys.meta_path`.
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.. versionchanged:: 3.4
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Returns ``None`` when called instead of ``NotImplemented``.
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.. class:: PathEntryFinder
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An abstract base class representing a :term:`path entry finder`. Though
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it bears some similarities to :class:`MetaPathFinder`, ``PathEntryFinder``
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is meant for use only within the path-based import subsystem provided
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by :class:`PathFinder`. This ABC is a subclass of :class:`Finder` for
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compatibility reasons only.
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.. versionadded:: 3.3
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.. method:: find_spec(fullname, target=None)
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An abstract method for finding a :term:`spec <module spec>` for
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the specified module. The finder will search for the module only
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within the :term:`path entry` to which it is assigned. If a spec
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cannot be found, ``None`` is returned. When passed in, ``target``
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is a module object that the finder may use to make a more educated
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guess about what spec to return.
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.. versionadded:: 3.4
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.. method:: find_loader(fullname)
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A legacy method for finding a :term:`loader` for the specified
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module. Returns a 2-tuple of ``(loader, portion)`` where ``portion``
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is a sequence of file system locations contributing to part of a namespace
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package. The loader may be ``None`` while specifying ``portion`` to
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signify the contribution of the file system locations to a namespace
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package. An empty list can be used for ``portion`` to signify the loader
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is not part of a namespace package. If ``loader`` is ``None`` and
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``portion`` is the empty list then no loader or location for a namespace
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package were found (i.e. failure to find anything for the module).
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If :meth:`find_spec` is defined then backwards-compatible functionality is
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provided.
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.. versionchanged:: 3.4
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Returns ``(None, [])`` instead of raising :exc:`NotImplementedError`.
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Uses :meth:`find_spec` when available to provide functionality.
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.. deprecated:: 3.4
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Use :meth:`find_spec` instead.
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.. method:: find_module(fullname)
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A concrete implementation of :meth:`Finder.find_module` which is
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equivalent to ``self.find_loader(fullname)[0]``.
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.. deprecated:: 3.4
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Use :meth:`find_spec` instead.
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.. method:: invalidate_caches()
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An optional method which, when called, should invalidate any internal
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cache used by the finder. Used by :meth:`PathFinder.invalidate_caches`
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when invalidating the caches of all cached finders.
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.. class:: Loader
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An abstract base class for a :term:`loader`.
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See :pep:`302` for the exact definition for a loader.
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.. method:: create_module(spec)
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A method that returns the module object to use when
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importing a module. This method may return ``None``,
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indicating that default module creation semantics should take place.
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.. versionadded:: 3.4
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.. versionchanged:: 3.5
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Starting in Python 3.6, this method will not be optional when
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:meth:`exec_module` is defined.
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.. method:: exec_module(module)
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An abstract method that executes the module in its own namespace
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when a module is imported or reloaded. The module should already
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be initialized when ``exec_module()`` is called. When this method exists,
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:meth:`~importlib.abc.Loader.create_module` must be defined.
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.. versionadded:: 3.4
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.. versionchanged:: 3.6
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:meth:`~importlib.abc.Loader.create_module` must also be defined.
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.. method:: load_module(fullname)
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A legacy method for loading a module. If the module cannot be
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loaded, :exc:`ImportError` is raised, otherwise the loaded module is
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returned.
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If the requested module already exists in :data:`sys.modules`, that
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module should be used and reloaded.
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Otherwise the loader should create a new module and insert it into
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:data:`sys.modules` before any loading begins, to prevent recursion
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from the import. If the loader inserted a module and the load fails, it
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must be removed by the loader from :data:`sys.modules`; modules already
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in :data:`sys.modules` before the loader began execution should be left
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alone (see :func:`importlib.util.module_for_loader`).
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The loader should set several attributes on the module.
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(Note that some of these attributes can change when a module is
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reloaded):
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- :attr:`__name__`
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The name of the module.
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- :attr:`__file__`
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The path to where the module data is stored (not set for built-in
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modules).
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- :attr:`__cached__`
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The path to where a compiled version of the module is/should be
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stored (not set when the attribute would be inappropriate).
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- :attr:`__path__`
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A list of strings specifying the search path within a
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package. This attribute is not set on modules.
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- :attr:`__package__`
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The parent package for the module/package. If the module is
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top-level then it has a value of the empty string. The
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:func:`importlib.util.module_for_loader` decorator can handle the
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details for :attr:`__package__`.
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- :attr:`__loader__`
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The loader used to load the module. The
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:func:`importlib.util.module_for_loader` decorator can handle the
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details for :attr:`__package__`.
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When :meth:`exec_module` is available then backwards-compatible
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functionality is provided.
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.. versionchanged:: 3.4
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Raise :exc:`ImportError` when called instead of
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:exc:`NotImplementedError`. Functionality provided when
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:meth:`exec_module` is available.
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.. deprecated:: 3.4
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The recommended API for loading a module is :meth:`exec_module`
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(and :meth:`create_module`). Loaders should implement
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it instead of load_module(). The import machinery takes care of
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all the other responsibilities of load_module() when exec_module()
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is implemented.
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.. method:: module_repr(module)
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A legacy method which when implemented calculates and returns the
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given module's repr, as a string. The module type's default repr() will
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use the result of this method as appropriate.
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.. versionadded:: 3.3
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.. versionchanged:: 3.4
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Made optional instead of an abstractmethod.
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.. deprecated:: 3.4
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The import machinery now takes care of this automatically.
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.. class:: ResourceLoader
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An abstract base class for a :term:`loader` which implements the optional
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:pep:`302` protocol for loading arbitrary resources from the storage
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back-end.
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.. abstractmethod:: get_data(path)
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An abstract method to return the bytes for the data located at *path*.
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Loaders that have a file-like storage back-end
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that allows storing arbitrary data
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can implement this abstract method to give direct access
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to the data stored. :exc:`OSError` is to be raised if the *path* cannot
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be found. The *path* is expected to be constructed using a module's
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:attr:`__file__` attribute or an item from a package's :attr:`__path__`.
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.. versionchanged:: 3.4
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Raises :exc:`OSError` instead of :exc:`NotImplementedError`.
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.. class:: InspectLoader
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An abstract base class for a :term:`loader` which implements the optional
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:pep:`302` protocol for loaders that inspect modules.
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.. method:: get_code(fullname)
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Return the code object for a module, or ``None`` if the module does not
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have a code object (as would be the case, for example, for a built-in
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module). Raise an :exc:`ImportError` if loader cannot find the
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requested module.
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.. note::
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While the method has a default implementation, it is suggested that
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it be overridden if possible for performance.
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.. index::
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single: universal newlines; importlib.abc.InspectLoader.get_source method
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.. versionchanged:: 3.4
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No longer abstract and a concrete implementation is provided.
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.. abstractmethod:: get_source(fullname)
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An abstract method to return the source of a module. It is returned as
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a text string using :term:`universal newlines`, translating all
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recognized line separators into ``'\n'`` characters. Returns ``None``
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if no source is available (e.g. a built-in module). Raises
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:exc:`ImportError` if the loader cannot find the module specified.
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.. versionchanged:: 3.4
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Raises :exc:`ImportError` instead of :exc:`NotImplementedError`.
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.. method:: is_package(fullname)
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An abstract method to return a true value if the module is a package, a
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false value otherwise. :exc:`ImportError` is raised if the
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|
:term:`loader` cannot find the module.
|
|
|
|
.. versionchanged:: 3.4
|
|
Raises :exc:`ImportError` instead of :exc:`NotImplementedError`.
|
|
|
|
.. staticmethod:: source_to_code(data, path='<string>')
|
|
|
|
Create a code object from Python source.
|
|
|
|
The *data* argument can be whatever the :func:`compile` function
|
|
supports (i.e. string or bytes). The *path* argument should be
|
|
the "path" to where the source code originated from, which can be an
|
|
abstract concept (e.g. location in a zip file).
|
|
|
|
With the subsequent code object one can execute it in a module by
|
|
running ``exec(code, module.__dict__)``.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
.. versionchanged:: 3.5
|
|
Made the method static.
|
|
|
|
.. method:: exec_module(module)
|
|
|
|
Implementation of :meth:`Loader.exec_module`.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
.. method:: load_module(fullname)
|
|
|
|
Implementation of :meth:`Loader.load_module`.
|
|
|
|
.. deprecated:: 3.4
|
|
use :meth:`exec_module` instead.
|
|
|
|
|
|
.. class:: ExecutionLoader
|
|
|
|
An abstract base class which inherits from :class:`InspectLoader` that,
|
|
when implemented, helps a module to be executed as a script. The ABC
|
|
represents an optional :pep:`302` protocol.
|
|
|
|
.. abstractmethod:: get_filename(fullname)
|
|
|
|
An abstract method that is to return the value of :attr:`__file__` for
|
|
the specified module. If no path is available, :exc:`ImportError` is
|
|
raised.
|
|
|
|
If source code is available, then the method should return the path to
|
|
the source file, regardless of whether a bytecode was used to load the
|
|
module.
|
|
|
|
.. versionchanged:: 3.4
|
|
Raises :exc:`ImportError` instead of :exc:`NotImplementedError`.
|
|
|
|
|
|
.. class:: FileLoader(fullname, path)
|
|
|
|
An abstract base class which inherits from :class:`ResourceLoader` and
|
|
:class:`ExecutionLoader`, providing concrete implementations of
|
|
:meth:`ResourceLoader.get_data` and :meth:`ExecutionLoader.get_filename`.
|
|
|
|
The *fullname* argument is a fully resolved name of the module the loader is
|
|
to handle. The *path* argument is the path to the file for the module.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. attribute:: name
|
|
|
|
The name of the module the loader can handle.
|
|
|
|
.. attribute:: path
|
|
|
|
Path to the file of the module.
|
|
|
|
.. method:: load_module(fullname)
|
|
|
|
Calls super's ``load_module()``.
|
|
|
|
.. deprecated:: 3.4
|
|
Use :meth:`Loader.exec_module` instead.
|
|
|
|
.. abstractmethod:: get_filename(fullname)
|
|
|
|
Returns :attr:`path`.
|
|
|
|
.. abstractmethod:: get_data(path)
|
|
|
|
Reads *path* as a binary file and returns the bytes from it.
|
|
|
|
|
|
.. class:: SourceLoader
|
|
|
|
An abstract base class for implementing source (and optionally bytecode)
|
|
file loading. The class inherits from both :class:`ResourceLoader` and
|
|
:class:`ExecutionLoader`, requiring the implementation of:
|
|
|
|
* :meth:`ResourceLoader.get_data`
|
|
* :meth:`ExecutionLoader.get_filename`
|
|
Should only return the path to the source file; sourceless
|
|
loading is not supported.
|
|
|
|
The abstract methods defined by this class are to add optional bytecode
|
|
file support. Not implementing these optional methods (or causing them to
|
|
raise :exc:`NotImplementedError`) causes the loader to
|
|
only work with source code. Implementing the methods allows the loader to
|
|
work with source *and* bytecode files; it does not allow for *sourceless*
|
|
loading where only bytecode is provided. Bytecode files are an
|
|
optimization to speed up loading by removing the parsing step of Python's
|
|
compiler, and so no bytecode-specific API is exposed.
|
|
|
|
.. method:: path_stats(path)
|
|
|
|
Optional abstract method which returns a :class:`dict` containing
|
|
metadata about the specified path. Supported dictionary keys are:
|
|
|
|
- ``'mtime'`` (mandatory): an integer or floating-point number
|
|
representing the modification time of the source code;
|
|
- ``'size'`` (optional): the size in bytes of the source code.
|
|
|
|
Any other keys in the dictionary are ignored, to allow for future
|
|
extensions. If the path cannot be handled, :exc:`OSError` is raised.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. versionchanged:: 3.4
|
|
Raise :exc:`OSError` instead of :exc:`NotImplementedError`.
|
|
|
|
.. method:: path_mtime(path)
|
|
|
|
Optional abstract method which returns the modification time for the
|
|
specified path.
|
|
|
|
.. deprecated:: 3.3
|
|
This method is deprecated in favour of :meth:`path_stats`. You don't
|
|
have to implement it, but it is still available for compatibility
|
|
purposes. Raise :exc:`OSError` if the path cannot be handled.
|
|
|
|
.. versionchanged:: 3.4
|
|
Raise :exc:`OSError` instead of :exc:`NotImplementedError`.
|
|
|
|
.. method:: set_data(path, data)
|
|
|
|
Optional abstract method which writes the specified bytes to a file
|
|
path. Any intermediate directories which do not exist are to be created
|
|
automatically.
|
|
|
|
When writing to the path fails because the path is read-only
|
|
(:attr:`errno.EACCES`/:exc:`PermissionError`), do not propagate the
|
|
exception.
|
|
|
|
.. versionchanged:: 3.4
|
|
No longer raises :exc:`NotImplementedError` when called.
|
|
|
|
.. method:: get_code(fullname)
|
|
|
|
Concrete implementation of :meth:`InspectLoader.get_code`.
|
|
|
|
.. method:: exec_module(module)
|
|
|
|
Concrete implementation of :meth:`Loader.exec_module`.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
.. method:: load_module(fullname)
|
|
|
|
Concrete implementation of :meth:`Loader.load_module`.
|
|
|
|
.. deprecated:: 3.4
|
|
Use :meth:`exec_module` instead.
|
|
|
|
.. method:: get_source(fullname)
|
|
|
|
Concrete implementation of :meth:`InspectLoader.get_source`.
|
|
|
|
.. method:: is_package(fullname)
|
|
|
|
Concrete implementation of :meth:`InspectLoader.is_package`. A module
|
|
is determined to be a package if its file path (as provided by
|
|
:meth:`ExecutionLoader.get_filename`) is a file named
|
|
``__init__`` when the file extension is removed **and** the module name
|
|
itself does not end in ``__init__``.
|
|
|
|
|
|
:mod:`importlib.machinery` -- Importers and path hooks
|
|
------------------------------------------------------
|
|
|
|
.. module:: importlib.machinery
|
|
:synopsis: Importers and path hooks
|
|
|
|
**Source code:** :source:`Lib/importlib/machinery.py`
|
|
|
|
--------------
|
|
|
|
This module contains the various objects that help :keyword:`import`
|
|
find and load modules.
|
|
|
|
.. attribute:: SOURCE_SUFFIXES
|
|
|
|
A list of strings representing the recognized file suffixes for source
|
|
modules.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. attribute:: DEBUG_BYTECODE_SUFFIXES
|
|
|
|
A list of strings representing the file suffixes for non-optimized bytecode
|
|
modules.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. deprecated:: 3.5
|
|
Use :attr:`BYTECODE_SUFFIXES` instead.
|
|
|
|
.. attribute:: OPTIMIZED_BYTECODE_SUFFIXES
|
|
|
|
A list of strings representing the file suffixes for optimized bytecode
|
|
modules.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. deprecated:: 3.5
|
|
Use :attr:`BYTECODE_SUFFIXES` instead.
|
|
|
|
.. attribute:: BYTECODE_SUFFIXES
|
|
|
|
A list of strings representing the recognized file suffixes for bytecode
|
|
modules (including the leading dot).
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. versionchanged:: 3.5
|
|
The value is no longer dependent on ``__debug__``.
|
|
|
|
.. attribute:: EXTENSION_SUFFIXES
|
|
|
|
A list of strings representing the recognized file suffixes for
|
|
extension modules.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. function:: all_suffixes()
|
|
|
|
Returns a combined list of strings representing all file suffixes for
|
|
modules recognized by the standard import machinery. This is a
|
|
helper for code which simply needs to know if a filesystem path
|
|
potentially refers to a module without needing any details on the kind
|
|
of module (for example, :func:`inspect.getmodulename`).
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
|
|
.. class:: BuiltinImporter
|
|
|
|
An :term:`importer` for built-in modules. All known built-in modules are
|
|
listed in :data:`sys.builtin_module_names`. This class implements the
|
|
:class:`importlib.abc.MetaPathFinder` and
|
|
:class:`importlib.abc.InspectLoader` ABCs.
|
|
|
|
Only class methods are defined by this class to alleviate the need for
|
|
instantiation.
|
|
|
|
.. versionchanged:: 3.5
|
|
As part of :pep:`489`, the builtin importer now implements
|
|
:meth:`Loader.create_module` and :meth:`Loader.exec_module`
|
|
|
|
|
|
.. class:: FrozenImporter
|
|
|
|
An :term:`importer` for frozen modules. This class implements the
|
|
:class:`importlib.abc.MetaPathFinder` and
|
|
:class:`importlib.abc.InspectLoader` ABCs.
|
|
|
|
Only class methods are defined by this class to alleviate the need for
|
|
instantiation.
|
|
|
|
|
|
.. class:: WindowsRegistryFinder
|
|
|
|
:term:`Finder` for modules declared in the Windows registry. This class
|
|
implements the :class:`importlib.abc.Finder` ABC.
|
|
|
|
Only class methods are defined by this class to alleviate the need for
|
|
instantiation.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. deprecated:: 3.6
|
|
Use :mod:`site` configuration instead. Future versions of Python may
|
|
not enable this finder by default.
|
|
|
|
|
|
.. class:: PathFinder
|
|
|
|
A :term:`Finder` for :data:`sys.path` and package ``__path__`` attributes.
|
|
This class implements the :class:`importlib.abc.MetaPathFinder` ABC.
|
|
|
|
Only class methods are defined by this class to alleviate the need for
|
|
instantiation.
|
|
|
|
.. classmethod:: find_spec(fullname, path=None, target=None)
|
|
|
|
Class method that attempts to find a :term:`spec <module spec>`
|
|
for the module specified by *fullname* on :data:`sys.path` or, if
|
|
defined, on *path*. For each path entry that is searched,
|
|
:data:`sys.path_importer_cache` is checked. If a non-false object
|
|
is found then it is used as the :term:`path entry finder` to look
|
|
for the module being searched for. If no entry is found in
|
|
:data:`sys.path_importer_cache`, then :data:`sys.path_hooks` is
|
|
searched for a finder for the path entry and, if found, is stored
|
|
in :data:`sys.path_importer_cache` along with being queried about
|
|
the module. If no finder is ever found then ``None`` is both
|
|
stored in the cache and returned.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
.. versionchanged:: 3.5
|
|
If the current working directory -- represented by an empty string --
|
|
is no longer valid then ``None`` is returned but no value is cached
|
|
in :data:`sys.path_importer_cache`.
|
|
|
|
.. classmethod:: find_module(fullname, path=None)
|
|
|
|
A legacy wrapper around :meth:`find_spec`.
|
|
|
|
.. deprecated:: 3.4
|
|
Use :meth:`find_spec` instead.
|
|
|
|
.. classmethod:: invalidate_caches()
|
|
|
|
Calls :meth:`importlib.abc.PathEntryFinder.invalidate_caches` on all
|
|
finders stored in :attr:`sys.path_importer_cache`.
|
|
|
|
.. versionchanged:: 3.4
|
|
Calls objects in :data:`sys.path_hooks` with the current working
|
|
directory for ``''`` (i.e. the empty string).
|
|
|
|
|
|
.. class:: FileFinder(path, \*loader_details)
|
|
|
|
A concrete implementation of :class:`importlib.abc.PathEntryFinder` which
|
|
caches results from the file system.
|
|
|
|
The *path* argument is the directory for which the finder is in charge of
|
|
searching.
|
|
|
|
The *loader_details* argument is a variable number of 2-item tuples each
|
|
containing a loader and a sequence of file suffixes the loader recognizes.
|
|
The loaders are expected to be callables which accept two arguments of
|
|
the module's name and the path to the file found.
|
|
|
|
The finder will cache the directory contents as necessary, making stat calls
|
|
for each module search to verify the cache is not outdated. Because cache
|
|
staleness relies upon the granularity of the operating system's state
|
|
information of the file system, there is a potential race condition of
|
|
searching for a module, creating a new file, and then searching for the
|
|
module the new file represents. If the operations happen fast enough to fit
|
|
within the granularity of stat calls, then the module search will fail. To
|
|
prevent this from happening, when you create a module dynamically, make sure
|
|
to call :func:`importlib.invalidate_caches`.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. attribute:: path
|
|
|
|
The path the finder will search in.
|
|
|
|
.. method:: find_spec(fullname, target=None)
|
|
|
|
Attempt to find the spec to handle *fullname* within :attr:`path`.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
.. method:: find_loader(fullname)
|
|
|
|
Attempt to find the loader to handle *fullname* within :attr:`path`.
|
|
|
|
.. method:: invalidate_caches()
|
|
|
|
Clear out the internal cache.
|
|
|
|
.. classmethod:: path_hook(\*loader_details)
|
|
|
|
A class method which returns a closure for use on :attr:`sys.path_hooks`.
|
|
An instance of :class:`FileFinder` is returned by the closure using the
|
|
path argument given to the closure directly and *loader_details*
|
|
indirectly.
|
|
|
|
If the argument to the closure is not an existing directory,
|
|
:exc:`ImportError` is raised.
|
|
|
|
|
|
.. class:: SourceFileLoader(fullname, path)
|
|
|
|
A concrete implementation of :class:`importlib.abc.SourceLoader` by
|
|
subclassing :class:`importlib.abc.FileLoader` and providing some concrete
|
|
implementations of other methods.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. attribute:: name
|
|
|
|
The name of the module that this loader will handle.
|
|
|
|
.. attribute:: path
|
|
|
|
The path to the source file.
|
|
|
|
.. method:: is_package(fullname)
|
|
|
|
Return true if :attr:`path` appears to be for a package.
|
|
|
|
.. method:: path_stats(path)
|
|
|
|
Concrete implementation of :meth:`importlib.abc.SourceLoader.path_stats`.
|
|
|
|
.. method:: set_data(path, data)
|
|
|
|
Concrete implementation of :meth:`importlib.abc.SourceLoader.set_data`.
|
|
|
|
.. method:: load_module(name=None)
|
|
|
|
Concrete implementation of :meth:`importlib.abc.Loader.load_module` where
|
|
specifying the name of the module to load is optional.
|
|
|
|
.. deprecated:: 3.6
|
|
|
|
Use :meth:`importlib.abc.Loader.exec_module` instead.
|
|
|
|
|
|
.. class:: SourcelessFileLoader(fullname, path)
|
|
|
|
A concrete implementation of :class:`importlib.abc.FileLoader` which can
|
|
import bytecode files (i.e. no source code files exist).
|
|
|
|
Please note that direct use of bytecode files (and thus not source code
|
|
files) inhibits your modules from being usable by all Python
|
|
implementations or new versions of Python which change the bytecode
|
|
format.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. attribute:: name
|
|
|
|
The name of the module the loader will handle.
|
|
|
|
.. attribute:: path
|
|
|
|
The path to the bytecode file.
|
|
|
|
.. method:: is_package(fullname)
|
|
|
|
Determines if the module is a package based on :attr:`path`.
|
|
|
|
.. method:: get_code(fullname)
|
|
|
|
Returns the code object for :attr:`name` created from :attr:`path`.
|
|
|
|
.. method:: get_source(fullname)
|
|
|
|
Returns ``None`` as bytecode files have no source when this loader is
|
|
used.
|
|
|
|
.. method:: load_module(name=None)
|
|
|
|
Concrete implementation of :meth:`importlib.abc.Loader.load_module` where
|
|
specifying the name of the module to load is optional.
|
|
|
|
.. deprecated:: 3.6
|
|
|
|
Use :meth:`importlib.abc.Loader.exec_module` instead.
|
|
|
|
|
|
.. class:: ExtensionFileLoader(fullname, path)
|
|
|
|
A concrete implementation of :class:`importlib.abc.ExecutionLoader` for
|
|
extension modules.
|
|
|
|
The *fullname* argument specifies the name of the module the loader is to
|
|
support. The *path* argument is the path to the extension module's file.
|
|
|
|
.. versionadded:: 3.3
|
|
|
|
.. attribute:: name
|
|
|
|
Name of the module the loader supports.
|
|
|
|
.. attribute:: path
|
|
|
|
Path to the extension module.
|
|
|
|
.. method:: create_module(spec)
|
|
|
|
Creates the module object from the given specification in accordance
|
|
with :pep:`489`.
|
|
|
|
.. versionadded:: 3.5
|
|
|
|
.. method:: exec_module(module)
|
|
|
|
Initializes the given module object in accordance with :pep:`489`.
|
|
|
|
.. versionadded:: 3.5
|
|
|
|
.. method:: is_package(fullname)
|
|
|
|
Returns ``True`` if the file path points to a package's ``__init__``
|
|
module based on :attr:`EXTENSION_SUFFIXES`.
|
|
|
|
.. method:: get_code(fullname)
|
|
|
|
Returns ``None`` as extension modules lack a code object.
|
|
|
|
.. method:: get_source(fullname)
|
|
|
|
Returns ``None`` as extension modules do not have source code.
|
|
|
|
.. method:: get_filename(fullname)
|
|
|
|
Returns :attr:`path`.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
|
|
.. class:: ModuleSpec(name, loader, *, origin=None, loader_state=None, is_package=None)
|
|
|
|
A specification for a module's import-system-related state.
|
|
|
|
.. versionadded:: 3.4
|
|
|
|
.. attribute:: name
|
|
|
|
(``__name__``)
|
|
|
|
A string for the fully-qualified name of the module.
|
|
|
|
.. attribute:: loader
|
|
|
|
(``__loader__``)
|
|
|
|
The loader to use for loading. For namespace packages this should be
|
|
set to ``None``.
|
|
|
|
.. attribute:: origin
|
|
|
|
(``__file__``)
|
|
|
|
Name of the place from which the module is loaded, e.g. "builtin" for
|
|
built-in modules and the filename for modules loaded from source.
|
|
Normally "origin" should be set, but it may be ``None`` (the default)
|
|
which indicates it is unspecified.
|
|
|
|
.. attribute:: submodule_search_locations
|
|
|
|
(``__path__``)
|
|
|
|
List of strings for where to find submodules, if a package (``None``
|
|
otherwise).
|
|
|
|
.. attribute:: loader_state
|
|
|
|
Container of extra module-specific data for use during loading (or
|
|
``None``).
|
|
|
|
.. attribute:: cached
|
|
|
|
(``__cached__``)
|
|
|
|
String for where the compiled module should be stored (or ``None``).
|
|
|
|
.. attribute:: parent
|
|
|
|
(``__package__``)
|
|
|
|
(Read-only) Fully-qualified name of the package to which the module
|
|
belongs as a submodule (or ``None``).
|
|
|
|
.. attribute:: has_location
|
|
|
|
Boolean indicating whether or not the module's "origin"
|
|
attribute refers to a loadable location.
|
|
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:mod:`importlib.util` -- Utility code for importers
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---------------------------------------------------
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.. module:: importlib.util
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:synopsis: Utility code for importers
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**Source code:** :source:`Lib/importlib/util.py`
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--------------
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This module contains the various objects that help in the construction of
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an :term:`importer`.
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.. attribute:: MAGIC_NUMBER
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The bytes which represent the bytecode version number. If you need help with
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loading/writing bytecode then consider :class:`importlib.abc.SourceLoader`.
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.. versionadded:: 3.4
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.. function:: cache_from_source(path, debug_override=None, *, optimization=None)
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Return the :pep:`3147`/:pep:`488` path to the byte-compiled file associated
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with the source *path*. For example, if *path* is ``/foo/bar/baz.py`` the return
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value would be ``/foo/bar/__pycache__/baz.cpython-32.pyc`` for Python 3.2.
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The ``cpython-32`` string comes from the current magic tag (see
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:func:`get_tag`; if :attr:`sys.implementation.cache_tag` is not defined then
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:exc:`NotImplementedError` will be raised).
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The *optimization* parameter is used to specify the optimization level of the
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bytecode file. An empty string represents no optimization, so
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``/foo/bar/baz.py`` with an *optimization* of ``''`` will result in a
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bytecode path of ``/foo/bar/__pycache__/baz.cpython-32.pyc``. ``None`` causes
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the interpter's optimization level to be used. Any other value's string
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representation being used, so ``/foo/bar/baz.py`` with an *optimization* of
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``2`` will lead to the bytecode path of
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``/foo/bar/__pycache__/baz.cpython-32.opt-2.pyc``. The string representation
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of *optimization* can only be alphanumeric, else :exc:`ValueError` is raised.
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The *debug_override* parameter is deprecated and can be used to override
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the system's value for ``__debug__``. A ``True`` value is the equivalent of
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setting *optimization* to the empty string. A ``False`` value is the same as
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setting *optimization* to ``1``. If both *debug_override* an *optimization*
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are not ``None`` then :exc:`TypeError` is raised.
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.. versionadded:: 3.4
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.. versionchanged:: 3.5
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The *optimization* parameter was added and the *debug_override* parameter
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was deprecated.
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.. versionchanged:: 3.6
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Accepts a :term:`path-like object`.
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.. function:: source_from_cache(path)
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Given the *path* to a :pep:`3147` file name, return the associated source code
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file path. For example, if *path* is
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``/foo/bar/__pycache__/baz.cpython-32.pyc`` the returned path would be
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``/foo/bar/baz.py``. *path* need not exist, however if it does not conform
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to :pep:`3147` or :pep:`488` format, a ``ValueError`` is raised. If
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:attr:`sys.implementation.cache_tag` is not defined,
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:exc:`NotImplementedError` is raised.
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.. versionadded:: 3.4
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.. versionchanged:: 3.6
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Accepts a :term:`path-like object`.
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.. function:: decode_source(source_bytes)
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Decode the given bytes representing source code and return it as a string
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with universal newlines (as required by
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:meth:`importlib.abc.InspectLoader.get_source`).
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.. versionadded:: 3.4
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.. function:: resolve_name(name, package)
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Resolve a relative module name to an absolute one.
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If **name** has no leading dots, then **name** is simply returned. This
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allows for usage such as
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``importlib.util.resolve_name('sys', __package__)`` without doing a
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check to see if the **package** argument is needed.
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:exc:`ValueError` is raised if **name** is a relative module name but
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package is a false value (e.g. ``None`` or the empty string).
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:exc:`ValueError` is also raised a relative name would escape its containing
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package (e.g. requesting ``..bacon`` from within the ``spam`` package).
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.. versionadded:: 3.3
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.. function:: find_spec(name, package=None)
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Find the :term:`spec <module spec>` for a module, optionally relative to
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the specified **package** name. If the module is in :attr:`sys.modules`,
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then ``sys.modules[name].__spec__`` is returned (unless the spec would be
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``None`` or is not set, in which case :exc:`ValueError` is raised).
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Otherwise a search using :attr:`sys.meta_path` is done. ``None`` is
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returned if no spec is found.
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If **name** is for a submodule (contains a dot), the parent module is
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automatically imported.
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**name** and **package** work the same as for :func:`import_module`.
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.. versionadded:: 3.4
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.. function:: module_from_spec(spec)
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Create a new module based on **spec** and
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:meth:`spec.loader.create_module <importlib.abc.Loader.create_module>`.
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If :meth:`spec.loader.create_module <importlib.abc.Loader.create_module>`
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does not return ``None``, then any pre-existing attributes will not be reset.
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Also, no :exc:`AttributeError` will be raised if triggered while accessing
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**spec** or setting an attribute on the module.
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This function is preferred over using :class:`types.ModuleType` to create a
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new module as **spec** is used to set as many import-controlled attributes on
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the module as possible.
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.. versionadded:: 3.5
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.. decorator:: module_for_loader
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A :term:`decorator` for :meth:`importlib.abc.Loader.load_module`
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to handle selecting the proper
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module object to load with. The decorated method is expected to have a call
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signature taking two positional arguments
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(e.g. ``load_module(self, module)``) for which the second argument
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will be the module **object** to be used by the loader.
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Note that the decorator will not work on static methods because of the
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assumption of two arguments.
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The decorated method will take in the **name** of the module to be loaded
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as expected for a :term:`loader`. If the module is not found in
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:data:`sys.modules` then a new one is constructed. Regardless of where the
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module came from, :attr:`__loader__` set to **self** and :attr:`__package__`
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is set based on what :meth:`importlib.abc.InspectLoader.is_package` returns
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(if available). These attributes are set unconditionally to support
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reloading.
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If an exception is raised by the decorated method and a module was added to
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:data:`sys.modules`, then the module will be removed to prevent a partially
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initialized module from being in left in :data:`sys.modules`. If the module
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was already in :data:`sys.modules` then it is left alone.
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.. versionchanged:: 3.3
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:attr:`__loader__` and :attr:`__package__` are automatically set
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(when possible).
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.. versionchanged:: 3.4
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Set :attr:`__name__`, :attr:`__loader__` :attr:`__package__`
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unconditionally to support reloading.
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.. deprecated:: 3.4
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The import machinery now directly performs all the functionality
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provided by this function.
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.. decorator:: set_loader
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A :term:`decorator` for :meth:`importlib.abc.Loader.load_module`
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to set the :attr:`__loader__`
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attribute on the returned module. If the attribute is already set the
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decorator does nothing. It is assumed that the first positional argument to
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the wrapped method (i.e. ``self``) is what :attr:`__loader__` should be set
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to.
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.. versionchanged:: 3.4
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Set ``__loader__`` if set to ``None``, as if the attribute does not
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exist.
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.. deprecated:: 3.4
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The import machinery takes care of this automatically.
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.. decorator:: set_package
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A :term:`decorator` for :meth:`importlib.abc.Loader.load_module` to set the
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:attr:`__package__` attribute on the returned module. If :attr:`__package__`
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is set and has a value other than ``None`` it will not be changed.
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.. deprecated:: 3.4
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The import machinery takes care of this automatically.
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.. function:: spec_from_loader(name, loader, *, origin=None, is_package=None)
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A factory function for creating a :class:`ModuleSpec` instance based
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on a loader. The parameters have the same meaning as they do for
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ModuleSpec. The function uses available :term:`loader` APIs, such as
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:meth:`InspectLoader.is_package`, to fill in any missing
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information on the spec.
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.. versionadded:: 3.4
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.. function:: spec_from_file_location(name, location, *, loader=None, submodule_search_locations=None)
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A factory function for creating a :class:`ModuleSpec` instance based
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on the path to a file. Missing information will be filled in on the
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spec by making use of loader APIs and by the implication that the
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module will be file-based.
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.. versionadded:: 3.4
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.. versionchanged:: 3.6
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Accepts a :term:`path-like object`.
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.. class:: LazyLoader(loader)
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A class which postpones the execution of the loader of a module until the
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module has an attribute accessed.
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This class **only** works with loaders that define
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:meth:`~importlib.abc.Loader.exec_module` as control over what module type
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is used for the module is required. For those same reasons, the loader's
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:meth:`~importlib.abc.Loader.create_module` method must return ``None`` or a
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type for which its ``__class__`` attribute can be mutated along with not
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using :term:`slots <__slots__>`. Finally, modules which substitute the object
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placed into :attr:`sys.modules` will not work as there is no way to properly
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replace the module references throughout the interpreter safely;
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:exc:`ValueError` is raised if such a substitution is detected.
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.. note::
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For projects where startup time is critical, this class allows for
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potentially minimizing the cost of loading a module if it is never used.
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For projects where startup time is not essential then use of this class is
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**heavily** discouraged due to error messages created during loading being
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postponed and thus occurring out of context.
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.. versionadded:: 3.5
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.. versionchanged:: 3.6
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Began calling :meth:`~importlib.abc.Loader.create_module`, removing the
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compatibility warning for :class:`importlib.machinery.BuiltinImporter` and
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:class:`importlib.machinery.ExtensionFileLoader`.
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.. classmethod:: factory(loader)
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A static method which returns a callable that creates a lazy loader. This
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is meant to be used in situations where the loader is passed by class
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instead of by instance.
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::
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suffixes = importlib.machinery.SOURCE_SUFFIXES
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loader = importlib.machinery.SourceFileLoader
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lazy_loader = importlib.util.LazyLoader.factory(loader)
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finder = importlib.machinery.FileFinder(path, (lazy_loader, suffixes))
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.. _importlib-examples:
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Examples
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--------
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Importing programmatically
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''''''''''''''''''''''''''
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To programmatically import a module, use :func:`importlib.import_module`.
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::
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import importlib
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itertools = importlib.import_module('itertools')
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Checking if a module can be imported
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''''''''''''''''''''''''''''''''''''
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If you need to find out if a module can be imported without actually doing the
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import, then you should use :func:`importlib.util.find_spec`.
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::
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import importlib.util
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import sys
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# For illustrative purposes.
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name = 'itertools'
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spec = importlib.util.find_spec(name)
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if spec is None:
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print("can't find the itertools module")
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else:
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# If you chose to perform the actual import ...
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module = importlib.util.module_from_spec(spec)
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spec.loader.exec_module(module)
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# Adding the module to sys.modules is optional.
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sys.modules[name] = module
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Importing a source file directly
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''''''''''''''''''''''''''''''''
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To import a Python source file directly, use the following recipe
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(Python 3.4 and newer only)::
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import importlib.util
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import sys
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# For illustrative purposes.
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import tokenize
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file_path = tokenize.__file__
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module_name = tokenize.__name__
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spec = importlib.util.spec_from_file_location(module_name, file_path)
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module = importlib.util.module_from_spec(spec)
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spec.loader.exec_module(module)
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# Optional; only necessary if you want to be able to import the module
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# by name later.
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sys.modules[module_name] = module
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Setting up an importer
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''''''''''''''''''''''
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For deep customizations of import, you typically want to implement an
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:term:`importer`. This means managing both the :term:`finder` and :term:`loader`
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side of things. For finders there are two flavours to choose from depending on
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your needs: a :term:`meta path finder` or a :term:`path entry finder`. The
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former is what you would put on :attr:`sys.meta_path` while the latter is what
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you create using a :term:`path entry hook` on :attr:`sys.path_hooks` which works
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with :attr:`sys.path` entries to potentially create a finder. This example will
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show you how to register your own importers so that import will use them (for
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creating an importer for yourself, read the documentation for the appropriate
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classes defined within this package)::
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import importlib.machinery
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import sys
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# For illustrative purposes only.
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SpamMetaPathFinder = importlib.machinery.PathFinder
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SpamPathEntryFinder = importlib.machinery.FileFinder
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loader_details = (importlib.machinery.SourceFileLoader,
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importlib.machinery.SOURCE_SUFFIXES)
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# Setting up a meta path finder.
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# Make sure to put the finder in the proper location in the list in terms of
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# priority.
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sys.meta_path.append(SpamMetaPathFinder)
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# Setting up a path entry finder.
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# Make sure to put the path hook in the proper location in the list in terms
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# of priority.
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sys.path_hooks.append(SpamPathEntryFinder.path_hook(loader_details))
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Approximating :func:`importlib.import_module`
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'''''''''''''''''''''''''''''''''''''''''''''
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Import itself is implemented in Python code, making it possible to
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expose most of the import machinery through importlib. The following
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helps illustrate the various APIs that importlib exposes by providing an
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approximate implementation of
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:func:`importlib.import_module` (Python 3.4 and newer for the importlib usage,
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Python 3.6 and newer for other parts of the code).
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::
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import importlib.util
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import sys
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def import_module(name, package=None):
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"""An approximate implementation of import."""
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absolute_name = importlib.util.resolve_name(name, package)
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try:
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return sys.modules[absolute_name]
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except KeyError:
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pass
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path = None
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if '.' in absolute_name:
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parent_name, _, child_name = absolute_name.rpartition('.')
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parent_module = import_module(parent_name)
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path = parent_module.spec.submodule_search_locations
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for finder in sys.meta_path:
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spec = finder.find_spec(absolute_name, path)
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if spec is not None:
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break
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else:
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raise ImportError(f'No module named {absolute_name!r}')
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module = importlib.util.module_from_spec(spec)
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spec.loader.exec_module(module)
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sys.modules[absolute_name] = module
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if path is not None:
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setattr(parent_module, child_name, module)
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return module
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