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# SOME DESCRIPTIVE TITLE.
# Copyright (C) 2001-2026, Python Software Foundation
# This file is distributed under the same license as the Python package.
# FIRST AUTHOR <EMAIL@ADDRESS>, YEAR.
#
# Translators:
# python-doc bot, 2025
#
#, fuzzy
msgid ""
msgstr ""
"Project-Id-Version: Python 3.13\n"
"Report-Msgid-Bugs-To: \n"
"POT-Creation-Date: 2026-04-03 15:26+0000\n"
"PO-Revision-Date: 2025-09-15 01:03+0000\n"
"Last-Translator: python-doc bot, 2025\n"
"Language-Team: Polish (https://app.transifex.com/python-doc/teams/5390/pl/)\n"
"MIME-Version: 1.0\n"
"Content-Type: text/plain; charset=UTF-8\n"
"Content-Transfer-Encoding: 8bit\n"
"Language: pl\n"
"Plural-Forms: nplurals=4; plural=(n==1 ? 0 : (n%10>=2 && n%10<=4) && "
"(n%100<12 || n%100>14) ? 1 : n!=1 && (n%10>=0 && n%10<=1) || (n%10>=5 && "
"n%10<=9) || (n%100>=12 && n%100<=14) ? 2 : 3);\n"
msgid "Module Objects"
msgstr ""
msgid ""
"This instance of :c:type:`PyTypeObject` represents the Python module type. "
"This is exposed to Python programs as :py:class:`types.ModuleType`."
msgstr ""
msgid ""
"Return true if *p* is a module object, or a subtype of a module object. This "
"function always succeeds."
msgstr ""
msgid ""
"Return true if *p* is a module object, but not a subtype of :c:data:"
"`PyModule_Type`. This function always succeeds."
msgstr ""
msgid ""
"Return a new module object with :attr:`module.__name__` set to *name*. The "
"module's :attr:`!__name__`, :attr:`~module.__doc__`, :attr:`~module."
"__package__` and :attr:`~module.__loader__` attributes are filled in (all "
"but :attr:`!__name__` are set to ``None``). The caller is responsible for "
"setting a :attr:`~module.__file__` attribute."
msgstr ""
msgid "Return ``NULL`` with an exception set on error."
msgstr ""
msgid ""
":attr:`~module.__package__` and :attr:`~module.__loader__` are now set to "
"``None``."
msgstr ""
msgid ""
"Similar to :c:func:`PyModule_NewObject`, but the name is a UTF-8 encoded "
"string instead of a Unicode object."
msgstr ""
msgid ""
"Return the dictionary object that implements *module*'s namespace; this "
"object is the same as the :attr:`~object.__dict__` attribute of the module "
"object. If *module* is not a module object (or a subtype of a module "
"object), :exc:`SystemError` is raised and ``NULL`` is returned."
msgstr ""
msgid ""
"It is recommended extensions use other ``PyModule_*`` and ``PyObject_*`` "
"functions rather than directly manipulate a module's :attr:`~object."
"__dict__`."
msgstr ""
msgid ""
"The returned reference is borrowed from the module; it is valid until the "
"module is destroyed."
msgstr ""
msgid ""
"Return *module*'s :attr:`~module.__name__` value. If the module does not "
"provide one, or if it is not a string, :exc:`SystemError` is raised and "
"``NULL`` is returned."
msgstr ""
msgid ""
"Similar to :c:func:`PyModule_GetNameObject` but return the name encoded to "
"``'utf-8'``."
msgstr ""
msgid ""
"The returned buffer is only valid until the module is renamed or destroyed. "
"Note that Python code may rename a module by setting its :py:attr:`~module."
"__name__` attribute."
msgstr ""
msgid ""
"Return the \"state\" of the module, that is, a pointer to the block of "
"memory allocated at module creation time, or ``NULL``. See :c:member:"
"`PyModuleDef.m_size`."
msgstr ""
msgid ""
"Return a pointer to the :c:type:`PyModuleDef` struct from which the module "
"was created, or ``NULL`` if the module wasn't created from a definition."
msgstr ""
msgid ""
"On error, return ``NULL`` with an exception set. Use :c:func:"
"`PyErr_Occurred` to tell this case apart from a missing :c:type:`!"
"PyModuleDef`."
msgstr ""
msgid ""
"Return the name of the file from which *module* was loaded using *module*'s :"
"attr:`~module.__file__` attribute. If this is not defined, or if it is not "
"a string, raise :exc:`SystemError` and return ``NULL``; otherwise return a "
"reference to a Unicode object."
msgstr ""
msgid ""
"Similar to :c:func:`PyModule_GetFilenameObject` but return the filename "
"encoded to 'utf-8'."
msgstr ""
msgid ""
"The returned buffer is only valid until the module's :py:attr:`~module."
"__file__` attribute is reassigned or the module is destroyed."
msgstr ""
msgid ""
":c:func:`PyModule_GetFilename` raises :exc:`UnicodeEncodeError` on "
"unencodable filenames, use :c:func:`PyModule_GetFilenameObject` instead."
msgstr ""
msgid "Initializing C modules"
msgstr ""
msgid ""
"Modules objects are usually created from extension modules (shared libraries "
"which export an initialization function), or compiled-in modules (where the "
"initialization function is added using :c:func:`PyImport_AppendInittab`). "
"See :ref:`building` or :ref:`extending-with-embedding` for details."
msgstr ""
msgid ""
"The initialization function can either pass a module definition instance to :"
"c:func:`PyModule_Create`, and return the resulting module object, or request "
"\"multi-phase initialization\" by returning the definition struct itself."
msgstr ""
msgid ""
"The module definition struct, which holds all information needed to create a "
"module object. There is usually only one statically initialized variable of "
"this type for each module."
msgstr ""
msgid "Always initialize this member to :c:macro:`PyModuleDef_HEAD_INIT`."
msgstr ""
msgid "Name for the new module."
msgstr ""
msgid ""
"Docstring for the module; usually a docstring variable created with :c:macro:"
"`PyDoc_STRVAR` is used."
msgstr ""
msgid ""
"Module state may be kept in a per-module memory area that can be retrieved "
"with :c:func:`PyModule_GetState`, rather than in static globals. This makes "
"modules safe for use in multiple sub-interpreters."
msgstr ""
msgid ""
"This memory area is allocated based on *m_size* on module creation, and "
"freed when the module object is deallocated, after the :c:member:"
"`~PyModuleDef.m_free` function has been called, if present."
msgstr ""
msgid ""
"Setting ``m_size`` to ``-1`` means that the module does not support sub-"
"interpreters, because it has global state."
msgstr ""
msgid ""
"Setting it to a non-negative value means that the module can be re-"
"initialized and specifies the additional amount of memory it requires for "
"its state. Non-negative ``m_size`` is required for multi-phase "
"initialization."
msgstr ""
msgid "See :PEP:`3121` for more details."
msgstr ""
msgid ""
"A pointer to a table of module-level functions, described by :c:type:"
"`PyMethodDef` values. Can be ``NULL`` if no functions are present."
msgstr ""
msgid ""
"An array of slot definitions for multi-phase initialization, terminated by a "
"``{0, NULL}`` entry. When using single-phase initialization, *m_slots* must "
"be ``NULL``."
msgstr ""
msgid ""
"Prior to version 3.5, this member was always set to ``NULL``, and was "
"defined as:"
msgstr ""
msgid ""
"A traversal function to call during GC traversal of the module object, or "
"``NULL`` if not needed."
msgstr ""
msgid ""
"This function is not called if the module state was requested but is not "
"allocated yet. This is the case immediately after the module is created and "
"before the module is executed (:c:data:`Py_mod_exec` function). More "
"precisely, this function is not called if :c:member:`~PyModuleDef.m_size` is "
"greater than 0 and the module state (as returned by :c:func:"
"`PyModule_GetState`) is ``NULL``."
msgstr ""
msgid "No longer called before the module state is allocated."
msgstr ""
msgid ""
"A clear function to call during GC clearing of the module object, or "
"``NULL`` if not needed."
msgstr ""
msgid ""
"Like :c:member:`PyTypeObject.tp_clear`, this function is not *always* called "
"before a module is deallocated. For example, when reference counting is "
"enough to determine that an object is no longer used, the cyclic garbage "
"collector is not involved and :c:member:`~PyModuleDef.m_free` is called "
"directly."
msgstr ""
msgid ""
"A function to call during deallocation of the module object, or ``NULL`` if "
"not needed."
msgstr ""
msgid "The type of ``PyModuleDef`` objects."
msgstr ""
msgid "Single-phase initialization"
msgstr ""
msgid ""
"The module initialization function may create and return the module object "
"directly. This is referred to as \"single-phase initialization\", and uses "
"one of the following two module creation functions:"
msgstr ""
msgid ""
"Create a new module object, given the definition in *def*. This behaves "
"like :c:func:`PyModule_Create2` with *module_api_version* set to :c:macro:"
"`PYTHON_API_VERSION`."
msgstr ""
msgid ""
"Create a new module object, given the definition in *def*, assuming the API "
"version *module_api_version*. If that version does not match the version of "
"the running interpreter, a :exc:`RuntimeWarning` is emitted."
msgstr ""
msgid ""
"Most uses of this function should be using :c:func:`PyModule_Create` "
"instead; only use this if you are sure you need it."
msgstr ""
msgid ""
"Before it is returned from in the initialization function, the resulting "
"module object is typically populated using functions like :c:func:"
"`PyModule_AddObjectRef`."
msgstr ""
msgid "Multi-phase initialization"
msgstr ""
msgid ""
"An alternate way to specify extensions is to request \"multi-phase "
"initialization\". Extension modules created this way behave more like Python "
"modules: the initialization is split between the *creation phase*, when the "
"module object is created, and the *execution phase*, when it is populated. "
"The distinction is similar to the :py:meth:`~object.__new__` and :py:meth:"
"`~object.__init__` methods of classes."
msgstr ""
msgid ""
"Unlike modules created using single-phase initialization, these modules are "
"not singletons. For example, if the :py:attr:`sys.modules` entry is removed "
"and the module is re-imported, a new module object is created, and typically "
"populated with fresh method and type objects. The old module is subject to "
"normal garbage collection. This mirrors the behavior of pure-Python modules."
msgstr ""
msgid ""
"Additional module instances may be created in :ref:`sub-interpreters <sub-"
"interpreter-support>` or after after Python runtime reinitialization (:c:"
"func:`Py_Finalize` and :c:func:`Py_Initialize`). In these cases, sharing "
"Python objects between module instances would likely cause crashes or "
"undefined behavior."
msgstr ""
msgid ""
"To avoid such issues, each instance of an extension module should be "
"*isolated*: changes to one instance should not implicitly affect the others, "
"and all state, including references to Python objects, should be specific to "
"a particular module instance. See :ref:`isolating-extensions-howto` for more "
"details and a practical guide."
msgstr ""
msgid ""
"A simpler way to avoid these issues is :ref:`raising an error on repeated "
"initialization <isolating-extensions-optout>`."
msgstr ""
msgid ""
"All modules created using multi-phase initialization are expected to "
"support :ref:`sub-interpreters <sub-interpreter-support>`, or otherwise "
"explicitly signal a lack of support. This is usually achieved by isolation "
"or blocking repeated initialization, as above. A module may also be limited "
"to the main interpreter using the :c:data:`Py_mod_multiple_interpreters` "
"slot."
msgstr ""
msgid ""
"To request multi-phase initialization, the initialization function "
"(PyInit_modulename) returns a :c:type:`PyModuleDef` instance with non-empty :"
"c:member:`~PyModuleDef.m_slots`. Before it is returned, the ``PyModuleDef`` "
"instance must be initialized with the following function:"
msgstr ""
msgid ""
"Ensures a module definition is a properly initialized Python object that "
"correctly reports its type and reference count."
msgstr ""
msgid "Returns *def* cast to ``PyObject*``, or ``NULL`` if an error occurred."
msgstr ""
msgid ""
"The *m_slots* member of the module definition must point to an array of "
"``PyModuleDef_Slot`` structures:"
msgstr ""
msgid "A slot ID, chosen from the available values explained below."
msgstr ""
msgid "Value of the slot, whose meaning depends on the slot ID."
msgstr ""
msgid "The *m_slots* array must be terminated by a slot with id 0."
msgstr ""
msgid "The available slot types are:"
msgstr ""
msgid ""
"Specifies a function that is called to create the module object itself. The "
"*value* pointer of this slot must point to a function of the signature:"
msgstr ""
msgid ""
"The function receives a :py:class:`~importlib.machinery.ModuleSpec` "
"instance, as defined in :PEP:`451`, and the module definition. It should "
"return a new module object, or set an error and return ``NULL``."
msgstr ""
msgid ""
"This function should be kept minimal. In particular, it should not call "
"arbitrary Python code, as trying to import the same module again may result "
"in an infinite loop."
msgstr ""
msgid ""
"Multiple ``Py_mod_create`` slots may not be specified in one module "
"definition."
msgstr ""
msgid ""
"If ``Py_mod_create`` is not specified, the import machinery will create a "
"normal module object using :c:func:`PyModule_New`. The name is taken from "
"*spec*, not the definition, to allow extension modules to dynamically adjust "
"to their place in the module hierarchy and be imported under different names "
"through symlinks, all while sharing a single module definition."
msgstr ""
msgid ""
"There is no requirement for the returned object to be an instance of :c:type:"
"`PyModule_Type`. Any type can be used, as long as it supports setting and "
"getting import-related attributes. However, only ``PyModule_Type`` instances "
"may be returned if the ``PyModuleDef`` has non-``NULL`` ``m_traverse``, "
"``m_clear``, ``m_free``; non-zero ``m_size``; or slots other than "
"``Py_mod_create``."
msgstr ""
msgid ""
"Specifies a function that is called to *execute* the module. This is "
"equivalent to executing the code of a Python module: typically, this "
"function adds classes and constants to the module. The signature of the "
"function is:"
msgstr ""
msgid ""
"If multiple ``Py_mod_exec`` slots are specified, they are processed in the "
"order they appear in the *m_slots* array."
msgstr ""
msgid "Specifies one of the following values:"
msgstr ""
msgid "The module does not support being imported in subinterpreters."
msgstr ""
msgid ""
"The module supports being imported in subinterpreters, but only when they "
"share the main interpreter's GIL. (See :ref:`isolating-extensions-howto`.)"
msgstr ""
msgid ""
"The module supports being imported in subinterpreters, even when they have "
"their own GIL. (See :ref:`isolating-extensions-howto`.)"
msgstr ""
msgid ""
"This slot determines whether or not importing this module in a "
"subinterpreter will fail."
msgstr ""
msgid ""
"Multiple ``Py_mod_multiple_interpreters`` slots may not be specified in one "
"module definition."
msgstr ""
msgid ""
"If ``Py_mod_multiple_interpreters`` is not specified, the import machinery "
"defaults to ``Py_MOD_MULTIPLE_INTERPRETERS_SUPPORTED``."
msgstr ""
msgid ""
"The module depends on the presence of the global interpreter lock (GIL), and "
"may access global state without synchronization."
msgstr ""
msgid "The module is safe to run without an active GIL."
msgstr ""
msgid ""
"This slot is ignored by Python builds not configured with :option:`--disable-"
"gil`. Otherwise, it determines whether or not importing this module will "
"cause the GIL to be automatically enabled. See :ref:`whatsnew313-free-"
"threaded-cpython` for more detail."
msgstr ""
msgid ""
"Multiple ``Py_mod_gil`` slots may not be specified in one module definition."
msgstr ""
msgid ""
"If ``Py_mod_gil`` is not specified, the import machinery defaults to "
"``Py_MOD_GIL_USED``."
msgstr ""
msgid "See :PEP:`489` for more details on multi-phase initialization."
msgstr ""
msgid "Low-level module creation functions"
msgstr ""
msgid ""
"The following functions are called under the hood when using multi-phase "
"initialization. They can be used directly, for example when creating module "
"objects dynamically. Note that both ``PyModule_FromDefAndSpec`` and "
"``PyModule_ExecDef`` must be called to fully initialize a module."
msgstr ""
msgid ""
"Create a new module object, given the definition in *def* and the ModuleSpec "
"*spec*. This behaves like :c:func:`PyModule_FromDefAndSpec2` with "
"*module_api_version* set to :c:macro:`PYTHON_API_VERSION`."
msgstr ""
msgid ""
"Create a new module object, given the definition in *def* and the ModuleSpec "
"*spec*, assuming the API version *module_api_version*. If that version does "
"not match the version of the running interpreter, a :exc:`RuntimeWarning` is "
"emitted."
msgstr ""
msgid ""
"Most uses of this function should be using :c:func:`PyModule_FromDefAndSpec` "
"instead; only use this if you are sure you need it."
msgstr ""
msgid "Process any execution slots (:c:data:`Py_mod_exec`) given in *def*."
msgstr ""
msgid ""
"Set the docstring for *module* to *docstring*. This function is called "
"automatically when creating a module from ``PyModuleDef``, using either "
"``PyModule_Create`` or ``PyModule_FromDefAndSpec``."
msgstr ""
msgid "Return ``0`` on success. Return ``-1`` with an exception set on error."
msgstr ""
msgid ""
"Add the functions from the ``NULL`` terminated *functions* array to "
"*module*. Refer to the :c:type:`PyMethodDef` documentation for details on "
"individual entries (due to the lack of a shared module namespace, module "
"level \"functions\" implemented in C typically receive the module as their "
"first parameter, making them similar to instance methods on Python classes). "
"This function is called automatically when creating a module from "
"``PyModuleDef``, using either ``PyModule_Create`` or "
"``PyModule_FromDefAndSpec``."
msgstr ""
msgid ""
"The *functions* array must be statically allocated (or otherwise guaranteed "
"to outlive the module object)."
msgstr ""
msgid "Support functions"
msgstr ""
msgid ""
"The module initialization function (if using single phase initialization) or "
"a function called from a module execution slot (if using multi-phase "
"initialization), can use the following functions to help initialize the "
"module state:"
msgstr ""
msgid ""
"Add an object to *module* as *name*. This is a convenience function which "
"can be used from the module's initialization function."
msgstr ""
msgid ""
"On success, return ``0``. On error, raise an exception and return ``-1``."
msgstr ""
msgid "Example usage::"
msgstr ""
msgid ""
"static int\n"
"add_spam(PyObject *module, int value)\n"
"{\n"
" PyObject *obj = PyLong_FromLong(value);\n"
" if (obj == NULL) {\n"
" return -1;\n"
" }\n"
" int res = PyModule_AddObjectRef(module, \"spam\", obj);\n"
" Py_DECREF(obj);\n"
" return res;\n"
" }"
msgstr ""
msgid ""
"To be convenient, the function accepts ``NULL`` *value* with an exception "
"set. In this case, return ``-1`` and just leave the raised exception "
"unchanged."
msgstr ""
msgid ""
"The example can also be written without checking explicitly if *obj* is "
"``NULL``::"
msgstr ""
msgid ""
"static int\n"
"add_spam(PyObject *module, int value)\n"
"{\n"
" PyObject *obj = PyLong_FromLong(value);\n"
" int res = PyModule_AddObjectRef(module, \"spam\", obj);\n"
" Py_XDECREF(obj);\n"
" return res;\n"
" }"
msgstr ""
msgid ""
"Note that ``Py_XDECREF()`` should be used instead of ``Py_DECREF()`` in this "
"case, since *obj* can be ``NULL``."
msgstr ""
msgid ""
"The number of different *name* strings passed to this function should be "
"kept small, usually by only using statically allocated strings as *name*. "
"For names that aren't known at compile time, prefer calling :c:func:"
"`PyUnicode_FromString` and :c:func:`PyObject_SetAttr` directly. For more "
"details, see :c:func:`PyUnicode_InternFromString`, which may be used "
"internally to create a key object."
msgstr ""
msgid ""
"Similar to :c:func:`PyModule_AddObjectRef`, but \"steals\" a reference to "
"*value*. It can be called with a result of function that returns a new "
"reference without bothering to check its result or even saving it to a "
"variable."
msgstr ""
msgid ""
"if (PyModule_Add(module, \"spam\", PyBytes_FromString(value)) < 0) {\n"
" goto error;\n"
"}"
msgstr ""
msgid ""
"Similar to :c:func:`PyModule_AddObjectRef`, but steals a reference to "
"*value* on success (if it returns ``0``)."
msgstr ""
msgid ""
"The new :c:func:`PyModule_Add` or :c:func:`PyModule_AddObjectRef` functions "
"are recommended, since it is easy to introduce reference leaks by misusing "
"the :c:func:`PyModule_AddObject` function."
msgstr ""
msgid ""
"Unlike other functions that steal references, ``PyModule_AddObject()`` only "
"releases the reference to *value* **on success**."
msgstr ""
msgid ""
"This means that its return value must be checked, and calling code must :c:"
"func:`Py_XDECREF` *value* manually on error."
msgstr ""
msgid ""
"PyObject *obj = PyBytes_FromString(value);\n"
"if (PyModule_AddObject(module, \"spam\", obj) < 0) {\n"
" // If 'obj' is not NULL and PyModule_AddObject() failed,\n"
" // 'obj' strong reference must be deleted with Py_XDECREF().\n"
" // If 'obj' is NULL, Py_XDECREF() does nothing.\n"
" Py_XDECREF(obj);\n"
" goto error;\n"
"}\n"
"// PyModule_AddObject() stole a reference to obj:\n"
"// Py_XDECREF(obj) is not needed here."
msgstr ""
msgid ":c:func:`PyModule_AddObject` is :term:`soft deprecated`."
msgstr ""
msgid ""
"Add an integer constant to *module* as *name*. This convenience function "
"can be used from the module's initialization function. Return ``-1`` with an "
"exception set on error, ``0`` on success."
msgstr ""
msgid ""
"This is a convenience function that calls :c:func:`PyLong_FromLong` and :c:"
"func:`PyModule_AddObjectRef`; see their documentation for details."
msgstr ""
msgid ""
"Add a string constant to *module* as *name*. This convenience function can "
"be used from the module's initialization function. The string *value* must "
"be ``NULL``-terminated. Return ``-1`` with an exception set on error, ``0`` "
"on success."
msgstr ""
msgid ""
"This is a convenience function that calls :c:func:"
"`PyUnicode_InternFromString` and :c:func:`PyModule_AddObjectRef`; see their "
"documentation for details."
msgstr ""
msgid ""
"Add an int constant to *module*. The name and the value are taken from "
"*macro*. For example ``PyModule_AddIntMacro(module, AF_INET)`` adds the int "
"constant *AF_INET* with the value of *AF_INET* to *module*. Return ``-1`` "
"with an exception set on error, ``0`` on success."
msgstr ""
msgid "Add a string constant to *module*."
msgstr ""
msgid ""
"Add a type object to *module*. The type object is finalized by calling "
"internally :c:func:`PyType_Ready`. The name of the type object is taken from "
"the last component of :c:member:`~PyTypeObject.tp_name` after dot. Return "
"``-1`` with an exception set on error, ``0`` on success."
msgstr ""
msgid ""
"Indicate that *module* does or does not support running without the global "
"interpreter lock (GIL), using one of the values from :c:macro:`Py_mod_gil`. "
"It must be called during *module*'s initialization function. If this "
"function is not called during module initialization, the import machinery "
"assumes the module does not support running without the GIL. This function "
"is only available in Python builds configured with :option:`--disable-gil`. "
"Return ``-1`` with an exception set on error, ``0`` on success."
msgstr ""
msgid "Module lookup"
msgstr ""
msgid ""
"Single-phase initialization creates singleton modules that can be looked up "
"in the context of the current interpreter. This allows the module object to "
"be retrieved later with only a reference to the module definition."
msgstr ""
msgid ""
"These functions will not work on modules created using multi-phase "
"initialization, since multiple such modules can be created from a single "
"definition."
msgstr ""
msgid ""
"Returns the module object that was created from *def* for the current "
"interpreter. This method requires that the module object has been attached "
"to the interpreter state with :c:func:`PyState_AddModule` beforehand. In "
"case the corresponding module object is not found or has not been attached "
"to the interpreter state yet, it returns ``NULL``."
msgstr ""
msgid ""
"Attaches the module object passed to the function to the interpreter state. "
"This allows the module object to be accessible via :c:func:"
"`PyState_FindModule`."
msgstr ""
msgid "Only effective on modules created using single-phase initialization."
msgstr ""
msgid ""
"Python calls ``PyState_AddModule`` automatically after importing a module, "
"so it is unnecessary (but harmless) to call it from module initialization "
"code. An explicit call is needed only if the module's own init code "
"subsequently calls ``PyState_FindModule``. The function is mainly intended "
"for implementing alternative import mechanisms (either by calling it "
"directly, or by referring to its implementation for details of the required "
"state updates)."
msgstr ""
msgid "The caller must hold the GIL."
msgstr ""
msgid "Return ``-1`` with an exception set on error, ``0`` on success."
msgstr ""
msgid ""
"Removes the module object created from *def* from the interpreter state. "
"Return ``-1`` with an exception set on error, ``0`` on success."
msgstr ""
msgid "object"
msgstr "obiekt"
msgid "module"
msgstr "moduł"
msgid "ModuleType (in module types)"
msgstr ""
msgid "__name__ (module attribute)"
msgstr ""
msgid "__doc__ (module attribute)"
msgstr ""
msgid "__file__ (module attribute)"
msgstr ""
msgid "__package__ (module attribute)"
msgstr ""
msgid "__loader__ (module attribute)"
msgstr ""
msgid "__dict__ (module attribute)"
msgstr ""
msgid "SystemError (built-in exception)"
msgstr ""