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Bugfix for feeds - removed categories related and up - load new books now working - category random now working login page is free of non accessible elements boolean custom column is vivible in UI books with only with certain languages can be shown book shelfs can be deleted from UI Anonymous user view is more resticted Added browse of series in sidebar Dependencys in vendor folder are updated to newer versions (licencs files are now present) Bugfix editing Authors names Made upload on windows working
483 lines
16 KiB
Python
483 lines
16 KiB
Python
# -*- coding: utf-8 -*-
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"""
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flask.cli
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~~~~~~~~~
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A simple command line application to run flask apps.
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:copyright: (c) 2015 by Armin Ronacher.
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:license: BSD, see LICENSE for more details.
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"""
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import os
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import sys
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from threading import Lock, Thread
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from functools import update_wrapper
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import click
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from ._compat import iteritems, reraise
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from .helpers import get_debug_flag
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class NoAppException(click.UsageError):
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"""Raised if an application cannot be found or loaded."""
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def find_best_app(module):
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"""Given a module instance this tries to find the best possible
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application in the module or raises an exception.
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"""
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from . import Flask
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# Search for the most common names first.
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for attr_name in 'app', 'application':
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app = getattr(module, attr_name, None)
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if app is not None and isinstance(app, Flask):
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return app
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# Otherwise find the only object that is a Flask instance.
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matches = [v for k, v in iteritems(module.__dict__)
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if isinstance(v, Flask)]
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if len(matches) == 1:
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return matches[0]
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raise NoAppException('Failed to find application in module "%s". Are '
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'you sure it contains a Flask application? Maybe '
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'you wrapped it in a WSGI middleware or you are '
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'using a factory function.' % module.__name__)
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def prepare_exec_for_file(filename):
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"""Given a filename this will try to calculate the python path, add it
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to the search path and return the actual module name that is expected.
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"""
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module = []
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# Chop off file extensions or package markers
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if filename.endswith('.py'):
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filename = filename[:-3]
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elif os.path.split(filename)[1] == '__init__.py':
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filename = os.path.dirname(filename)
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else:
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raise NoAppException('The file provided (%s) does exist but is not a '
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'valid Python file. This means that it cannot '
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'be used as application. Please change the '
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'extension to .py' % filename)
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filename = os.path.realpath(filename)
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dirpath = filename
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while 1:
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dirpath, extra = os.path.split(dirpath)
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module.append(extra)
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if not os.path.isfile(os.path.join(dirpath, '__init__.py')):
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break
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sys.path.insert(0, dirpath)
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return '.'.join(module[::-1])
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def locate_app(app_id):
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"""Attempts to locate the application."""
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__traceback_hide__ = True
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if ':' in app_id:
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module, app_obj = app_id.split(':', 1)
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else:
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module = app_id
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app_obj = None
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__import__(module)
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mod = sys.modules[module]
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if app_obj is None:
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app = find_best_app(mod)
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else:
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app = getattr(mod, app_obj, None)
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if app is None:
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raise RuntimeError('Failed to find application in module "%s"'
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% module)
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return app
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def find_default_import_path():
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app = os.environ.get('FLASK_APP')
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if app is None:
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return
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if os.path.isfile(app):
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return prepare_exec_for_file(app)
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return app
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class DispatchingApp(object):
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"""Special application that dispatches to a flask application which
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is imported by name in a background thread. If an error happens
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it is is recorded and shows as part of the WSGI handling which in case
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of the Werkzeug debugger means that it shows up in the browser.
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"""
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def __init__(self, loader, use_eager_loading=False):
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self.loader = loader
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self._app = None
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self._lock = Lock()
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self._bg_loading_exc_info = None
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if use_eager_loading:
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self._load_unlocked()
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else:
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self._load_in_background()
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def _load_in_background(self):
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def _load_app():
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__traceback_hide__ = True
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with self._lock:
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try:
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self._load_unlocked()
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except Exception:
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self._bg_loading_exc_info = sys.exc_info()
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t = Thread(target=_load_app, args=())
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t.start()
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def _flush_bg_loading_exception(self):
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__traceback_hide__ = True
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exc_info = self._bg_loading_exc_info
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if exc_info is not None:
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self._bg_loading_exc_info = None
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reraise(*exc_info)
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def _load_unlocked(self):
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__traceback_hide__ = True
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self._app = rv = self.loader()
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self._bg_loading_exc_info = None
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return rv
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def __call__(self, environ, start_response):
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__traceback_hide__ = True
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if self._app is not None:
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return self._app(environ, start_response)
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self._flush_bg_loading_exception()
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with self._lock:
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if self._app is not None:
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rv = self._app
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else:
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rv = self._load_unlocked()
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return rv(environ, start_response)
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class ScriptInfo(object):
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"""Help object to deal with Flask applications. This is usually not
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necessary to interface with as it's used internally in the dispatching
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to click. In future versions of Flask this object will most likely play
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a bigger role. Typically it's created automatically by the
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:class:`FlaskGroup` but you can also manually create it and pass it
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onwards as click object.
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"""
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def __init__(self, app_import_path=None, create_app=None):
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if create_app is None:
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if app_import_path is None:
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app_import_path = find_default_import_path()
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self.app_import_path = app_import_path
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else:
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app_import_path = None
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#: Optionally the import path for the Flask application.
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self.app_import_path = app_import_path
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#: Optionally a function that is passed the script info to create
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#: the instance of the application.
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self.create_app = create_app
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#: A dictionary with arbitrary data that can be associated with
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#: this script info.
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self.data = {}
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self._loaded_app = None
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def load_app(self):
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"""Loads the Flask app (if not yet loaded) and returns it. Calling
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this multiple times will just result in the already loaded app to
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be returned.
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"""
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__traceback_hide__ = True
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if self._loaded_app is not None:
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return self._loaded_app
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if self.create_app is not None:
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rv = self.create_app(self)
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else:
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if not self.app_import_path:
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raise NoAppException(
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'Could not locate Flask application. You did not provide '
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'the FLASK_APP environment variable.\n\nFor more '
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'information see '
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'http://flask.pocoo.org/docs/latest/quickstart/')
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rv = locate_app(self.app_import_path)
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debug = get_debug_flag()
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if debug is not None:
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rv.debug = debug
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self._loaded_app = rv
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return rv
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pass_script_info = click.make_pass_decorator(ScriptInfo, ensure=True)
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def with_appcontext(f):
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"""Wraps a callback so that it's guaranteed to be executed with the
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script's application context. If callbacks are registered directly
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to the ``app.cli`` object then they are wrapped with this function
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by default unless it's disabled.
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"""
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@click.pass_context
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def decorator(__ctx, *args, **kwargs):
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with __ctx.ensure_object(ScriptInfo).load_app().app_context():
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return __ctx.invoke(f, *args, **kwargs)
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return update_wrapper(decorator, f)
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class AppGroup(click.Group):
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"""This works similar to a regular click :class:`~click.Group` but it
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changes the behavior of the :meth:`command` decorator so that it
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automatically wraps the functions in :func:`with_appcontext`.
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Not to be confused with :class:`FlaskGroup`.
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"""
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def command(self, *args, **kwargs):
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"""This works exactly like the method of the same name on a regular
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:class:`click.Group` but it wraps callbacks in :func:`with_appcontext`
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unless it's disabled by passing ``with_appcontext=False``.
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"""
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wrap_for_ctx = kwargs.pop('with_appcontext', True)
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def decorator(f):
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if wrap_for_ctx:
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f = with_appcontext(f)
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return click.Group.command(self, *args, **kwargs)(f)
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return decorator
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def group(self, *args, **kwargs):
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"""This works exactly like the method of the same name on a regular
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:class:`click.Group` but it defaults the group class to
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:class:`AppGroup`.
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"""
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kwargs.setdefault('cls', AppGroup)
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return click.Group.group(self, *args, **kwargs)
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class FlaskGroup(AppGroup):
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"""Special subclass of the :class:`AppGroup` group that supports
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loading more commands from the configured Flask app. Normally a
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developer does not have to interface with this class but there are
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some very advanced use cases for which it makes sense to create an
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instance of this.
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For information as of why this is useful see :ref:`custom-scripts`.
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:param add_default_commands: if this is True then the default run and
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shell commands wil be added.
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:param create_app: an optional callback that is passed the script info
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and returns the loaded app.
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"""
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def __init__(self, add_default_commands=True, create_app=None, **extra):
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AppGroup.__init__(self, **extra)
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self.create_app = create_app
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if add_default_commands:
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self.add_command(run_command)
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self.add_command(shell_command)
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self._loaded_plugin_commands = False
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def _load_plugin_commands(self):
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if self._loaded_plugin_commands:
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return
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try:
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import pkg_resources
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except ImportError:
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self._loaded_plugin_commands = True
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return
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for ep in pkg_resources.iter_entry_points('flask.commands'):
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self.add_command(ep.load(), ep.name)
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self._loaded_plugin_commands = True
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def get_command(self, ctx, name):
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self._load_plugin_commands()
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# We load built-in commands first as these should always be the
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# same no matter what the app does. If the app does want to
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# override this it needs to make a custom instance of this group
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# and not attach the default commands.
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#
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# This also means that the script stays functional in case the
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# application completely fails.
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rv = AppGroup.get_command(self, ctx, name)
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if rv is not None:
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return rv
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info = ctx.ensure_object(ScriptInfo)
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try:
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rv = info.load_app().cli.get_command(ctx, name)
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if rv is not None:
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return rv
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except NoAppException:
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pass
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def list_commands(self, ctx):
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self._load_plugin_commands()
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# The commands available is the list of both the application (if
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# available) plus the builtin commands.
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rv = set(click.Group.list_commands(self, ctx))
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info = ctx.ensure_object(ScriptInfo)
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try:
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rv.update(info.load_app().cli.list_commands(ctx))
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except Exception:
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# Here we intentionally swallow all exceptions as we don't
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# want the help page to break if the app does not exist.
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# If someone attempts to use the command we try to create
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# the app again and this will give us the error.
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pass
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return sorted(rv)
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def main(self, *args, **kwargs):
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obj = kwargs.get('obj')
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if obj is None:
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obj = ScriptInfo(create_app=self.create_app)
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kwargs['obj'] = obj
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kwargs.setdefault('auto_envvar_prefix', 'FLASK')
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return AppGroup.main(self, *args, **kwargs)
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@click.command('run', short_help='Runs a development server.')
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@click.option('--host', '-h', default='127.0.0.1',
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help='The interface to bind to.')
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@click.option('--port', '-p', default=5000,
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help='The port to bind to.')
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@click.option('--reload/--no-reload', default=None,
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help='Enable or disable the reloader. By default the reloader '
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'is active if debug is enabled.')
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@click.option('--debugger/--no-debugger', default=None,
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help='Enable or disable the debugger. By default the debugger '
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'is active if debug is enabled.')
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@click.option('--eager-loading/--lazy-loader', default=None,
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help='Enable or disable eager loading. By default eager '
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'loading is enabled if the reloader is disabled.')
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@click.option('--with-threads/--without-threads', default=False,
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help='Enable or disable multithreading.')
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@pass_script_info
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def run_command(info, host, port, reload, debugger, eager_loading,
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with_threads):
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"""Runs a local development server for the Flask application.
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This local server is recommended for development purposes only but it
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can also be used for simple intranet deployments. By default it will
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not support any sort of concurrency at all to simplify debugging. This
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can be changed with the --with-threads option which will enable basic
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multithreading.
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The reloader and debugger are by default enabled if the debug flag of
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Flask is enabled and disabled otherwise.
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"""
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from werkzeug.serving import run_simple
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debug = get_debug_flag()
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if reload is None:
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reload = bool(debug)
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if debugger is None:
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debugger = bool(debug)
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if eager_loading is None:
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eager_loading = not reload
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app = DispatchingApp(info.load_app, use_eager_loading=eager_loading)
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# Extra startup messages. This depends a but on Werkzeug internals to
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# not double execute when the reloader kicks in.
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if os.environ.get('WERKZEUG_RUN_MAIN') != 'true':
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# If we have an import path we can print it out now which can help
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# people understand what's being served. If we do not have an
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# import path because the app was loaded through a callback then
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# we won't print anything.
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if info.app_import_path is not None:
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print(' * Serving Flask app "%s"' % info.app_import_path)
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if debug is not None:
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print(' * Forcing debug mode %s' % (debug and 'on' or 'off'))
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run_simple(host, port, app, use_reloader=reload,
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use_debugger=debugger, threaded=with_threads)
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@click.command('shell', short_help='Runs a shell in the app context.')
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@with_appcontext
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def shell_command():
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"""Runs an interactive Python shell in the context of a given
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Flask application. The application will populate the default
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namespace of this shell according to it's configuration.
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This is useful for executing small snippets of management code
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without having to manually configuring the application.
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"""
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import code
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from flask.globals import _app_ctx_stack
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app = _app_ctx_stack.top.app
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banner = 'Python %s on %s\nApp: %s%s\nInstance: %s' % (
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sys.version,
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sys.platform,
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app.import_name,
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app.debug and ' [debug]' or '',
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app.instance_path,
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)
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ctx = {}
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# Support the regular Python interpreter startup script if someone
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# is using it.
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startup = os.environ.get('PYTHONSTARTUP')
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if startup and os.path.isfile(startup):
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with open(startup, 'r') as f:
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eval(compile(f.read(), startup, 'exec'), ctx)
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ctx.update(app.make_shell_context())
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code.interact(banner=banner, local=ctx)
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cli = FlaskGroup(help="""\
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This shell command acts as general utility script for Flask applications.
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It loads the application configured (either through the FLASK_APP environment
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variable) and then provides commands either provided by the application or
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Flask itself.
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The most useful commands are the "run" and "shell" command.
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Example usage:
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\b
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%(prefix)s%(cmd)s FLASK_APP=hello
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%(prefix)s%(cmd)s FLASK_DEBUG=1
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%(prefix)sflask run
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""" % {
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'cmd': os.name == 'posix' and 'export' or 'set',
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'prefix': os.name == 'posix' and '$ ' or '',
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})
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def main(as_module=False):
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this_module = __package__ + '.cli'
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args = sys.argv[1:]
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if as_module:
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if sys.version_info >= (2, 7):
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name = 'python -m ' + this_module.rsplit('.', 1)[0]
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else:
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name = 'python -m ' + this_module
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# This module is always executed as "python -m flask.run" and as such
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# we need to ensure that we restore the actual command line so that
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# the reloader can properly operate.
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sys.argv = ['-m', this_module] + sys.argv[1:]
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else:
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name = None
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cli.main(args=args, prog_name=name)
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if __name__ == '__main__':
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main(as_module=True)
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