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605 lines
22 KiB
Python
605 lines
22 KiB
Python
5 years ago
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import functools
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import itertools
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import logging
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import os
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import signal
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import subprocess
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import sys
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import threading
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import time
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import traceback
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import weakref
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from collections import defaultdict
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from pathlib import Path
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from types import ModuleType
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from zipimport import zipimporter
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from django.apps import apps
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from django.core.signals import request_finished
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from django.dispatch import Signal
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from django.utils.functional import cached_property
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from django.utils.version import get_version_tuple
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autoreload_started = Signal()
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file_changed = Signal(providing_args=['file_path', 'kind'])
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DJANGO_AUTORELOAD_ENV = 'RUN_MAIN'
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logger = logging.getLogger('django.utils.autoreload')
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# If an error is raised while importing a file, it's not placed in sys.modules.
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# This means that any future modifications aren't caught. Keep a list of these
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# file paths to allow watching them in the future.
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_error_files = []
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_exception = None
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try:
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import termios
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except ImportError:
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termios = None
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try:
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import pywatchman
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except ImportError:
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pywatchman = None
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def check_errors(fn):
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@functools.wraps(fn)
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def wrapper(*args, **kwargs):
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global _exception
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try:
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fn(*args, **kwargs)
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except Exception:
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_exception = sys.exc_info()
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et, ev, tb = _exception
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if getattr(ev, 'filename', None) is None:
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# get the filename from the last item in the stack
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filename = traceback.extract_tb(tb)[-1][0]
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else:
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filename = ev.filename
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if filename not in _error_files:
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_error_files.append(filename)
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raise
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return wrapper
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def raise_last_exception():
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global _exception
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if _exception is not None:
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raise _exception[1]
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def ensure_echo_on():
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"""
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Ensure that echo mode is enabled. Some tools such as PDB disable
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it which causes usability issues after reload.
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"""
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if not termios or not sys.stdin.isatty():
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return
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attr_list = termios.tcgetattr(sys.stdin)
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if not attr_list[3] & termios.ECHO:
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attr_list[3] |= termios.ECHO
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if hasattr(signal, 'SIGTTOU'):
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old_handler = signal.signal(signal.SIGTTOU, signal.SIG_IGN)
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else:
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old_handler = None
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termios.tcsetattr(sys.stdin, termios.TCSANOW, attr_list)
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if old_handler is not None:
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signal.signal(signal.SIGTTOU, old_handler)
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def iter_all_python_module_files():
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# This is a hot path during reloading. Create a stable sorted list of
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# modules based on the module name and pass it to iter_modules_and_files().
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# This ensures cached results are returned in the usual case that modules
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# aren't loaded on the fly.
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keys = sorted(sys.modules)
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modules = tuple(m for m in map(sys.modules.__getitem__, keys) if not isinstance(m, weakref.ProxyTypes))
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return iter_modules_and_files(modules, frozenset(_error_files))
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@functools.lru_cache(maxsize=1)
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def iter_modules_and_files(modules, extra_files):
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"""Iterate through all modules needed to be watched."""
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sys_file_paths = []
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for module in modules:
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# During debugging (with PyDev) the 'typing.io' and 'typing.re' objects
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# are added to sys.modules, however they are types not modules and so
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# cause issues here.
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if not isinstance(module, ModuleType):
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continue
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if module.__name__ == '__main__':
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# __main__ (usually manage.py) doesn't always have a __spec__ set.
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# Handle this by falling back to using __file__, resolved below.
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# See https://docs.python.org/reference/import.html#main-spec
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# __file__ may not exists, e.g. when running ipdb debugger.
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if hasattr(module, '__file__'):
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sys_file_paths.append(module.__file__)
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continue
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if getattr(module, '__spec__', None) is None:
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continue
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spec = module.__spec__
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# Modules could be loaded from places without a concrete location. If
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# this is the case, skip them.
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if spec.has_location:
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origin = spec.loader.archive if isinstance(spec.loader, zipimporter) else spec.origin
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sys_file_paths.append(origin)
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results = set()
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for filename in itertools.chain(sys_file_paths, extra_files):
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if not filename:
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continue
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path = Path(filename)
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try:
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resolved_path = path.resolve(strict=True).absolute()
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except FileNotFoundError:
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# The module could have been removed, don't fail loudly if this
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# is the case.
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continue
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except ValueError as e:
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# Network filesystems may return null bytes in file paths.
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logger.debug('"%s" raised when resolving path: "%s"' % (str(e), path))
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continue
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results.add(resolved_path)
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return frozenset(results)
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@functools.lru_cache(maxsize=1)
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def common_roots(paths):
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"""
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Return a tuple of common roots that are shared between the given paths.
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File system watchers operate on directories and aren't cheap to create.
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Try to find the minimum set of directories to watch that encompass all of
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the files that need to be watched.
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"""
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# Inspired from Werkzeug:
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# https://github.com/pallets/werkzeug/blob/7477be2853df70a022d9613e765581b9411c3c39/werkzeug/_reloader.py
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# Create a sorted list of the path components, longest first.
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path_parts = sorted([x.parts for x in paths], key=len, reverse=True)
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tree = {}
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for chunks in path_parts:
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node = tree
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# Add each part of the path to the tree.
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for chunk in chunks:
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node = node.setdefault(chunk, {})
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# Clear the last leaf in the tree.
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node.clear()
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# Turn the tree into a list of Path instances.
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def _walk(node, path):
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for prefix, child in node.items():
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yield from _walk(child, path + (prefix,))
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if not node:
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yield Path(*path)
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return tuple(_walk(tree, ()))
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def sys_path_directories():
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"""
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Yield absolute directories from sys.path, ignoring entries that don't
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exist.
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"""
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for path in sys.path:
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path = Path(path)
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try:
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resolved_path = path.resolve(strict=True).absolute()
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except FileNotFoundError:
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continue
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# If the path is a file (like a zip file), watch the parent directory.
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if resolved_path.is_file():
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yield resolved_path.parent
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else:
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yield resolved_path
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def get_child_arguments():
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"""
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Return the executable. This contains a workaround for Windows if the
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executable is reported to not have the .exe extension which can cause bugs
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on reloading.
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"""
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import django.__main__
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args = [sys.executable] + ['-W%s' % o for o in sys.warnoptions]
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if sys.argv[0] == django.__main__.__file__:
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# The server was started with `python -m django runserver`.
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args += ['-m', 'django']
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args += sys.argv[1:]
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else:
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args += sys.argv
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return args
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def trigger_reload(filename):
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logger.info('%s changed, reloading.', filename)
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sys.exit(3)
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def restart_with_reloader():
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new_environ = {**os.environ, DJANGO_AUTORELOAD_ENV: 'true'}
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args = get_child_arguments()
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while True:
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p = subprocess.run(args, env=new_environ, close_fds=False)
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if p.returncode != 3:
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return p.returncode
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class BaseReloader:
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def __init__(self):
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self.extra_files = set()
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self.directory_globs = defaultdict(set)
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self._stop_condition = threading.Event()
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def watch_dir(self, path, glob):
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path = Path(path)
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try:
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path = path.absolute()
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except FileNotFoundError:
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logger.debug(
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'Unable to watch directory %s as it cannot be resolved.',
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path,
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exc_info=True,
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)
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return
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logger.debug('Watching dir %s with glob %s.', path, glob)
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self.directory_globs[path].add(glob)
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def watched_files(self, include_globs=True):
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"""
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Yield all files that need to be watched, including module files and
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files within globs.
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"""
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yield from iter_all_python_module_files()
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yield from self.extra_files
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if include_globs:
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for directory, patterns in self.directory_globs.items():
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for pattern in patterns:
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yield from directory.glob(pattern)
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def wait_for_apps_ready(self, app_reg, django_main_thread):
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"""
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Wait until Django reports that the apps have been loaded. If the given
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thread has terminated before the apps are ready, then a SyntaxError or
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other non-recoverable error has been raised. In that case, stop waiting
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for the apps_ready event and continue processing.
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Return True if the thread is alive and the ready event has been
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triggered, or False if the thread is terminated while waiting for the
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event.
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"""
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while django_main_thread.is_alive():
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if app_reg.ready_event.wait(timeout=0.1):
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return True
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else:
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logger.debug('Main Django thread has terminated before apps are ready.')
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return False
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def run(self, django_main_thread):
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logger.debug('Waiting for apps ready_event.')
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self.wait_for_apps_ready(apps, django_main_thread)
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from django.urls import get_resolver
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# Prevent a race condition where URL modules aren't loaded when the
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# reloader starts by accessing the urlconf_module property.
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try:
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get_resolver().urlconf_module
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except Exception:
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# Loading the urlconf can result in errors during development.
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# If this occurs then swallow the error and continue.
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pass
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logger.debug('Apps ready_event triggered. Sending autoreload_started signal.')
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autoreload_started.send(sender=self)
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self.run_loop()
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def run_loop(self):
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ticker = self.tick()
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while not self.should_stop:
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try:
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next(ticker)
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except StopIteration:
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break
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self.stop()
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def tick(self):
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"""
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This generator is called in a loop from run_loop. It's important that
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the method takes care of pausing or otherwise waiting for a period of
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time. This split between run_loop() and tick() is to improve the
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testability of the reloader implementations by decoupling the work they
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do from the loop.
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"""
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raise NotImplementedError('subclasses must implement tick().')
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@classmethod
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def check_availability(cls):
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raise NotImplementedError('subclasses must implement check_availability().')
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def notify_file_changed(self, path):
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results = file_changed.send(sender=self, file_path=path)
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logger.debug('%s notified as changed. Signal results: %s.', path, results)
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if not any(res[1] for res in results):
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trigger_reload(path)
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# These are primarily used for testing.
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@property
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def should_stop(self):
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return self._stop_condition.is_set()
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def stop(self):
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self._stop_condition.set()
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class StatReloader(BaseReloader):
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SLEEP_TIME = 1 # Check for changes once per second.
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def tick(self):
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mtimes = {}
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while True:
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for filepath, mtime in self.snapshot_files():
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old_time = mtimes.get(filepath)
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mtimes[filepath] = mtime
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if old_time is None:
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logger.debug('File %s first seen with mtime %s', filepath, mtime)
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continue
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elif mtime > old_time:
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logger.debug('File %s previous mtime: %s, current mtime: %s', filepath, old_time, mtime)
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self.notify_file_changed(filepath)
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time.sleep(self.SLEEP_TIME)
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yield
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def snapshot_files(self):
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# watched_files may produce duplicate paths if globs overlap.
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seen_files = set()
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for file in self.watched_files():
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if file in seen_files:
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continue
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try:
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mtime = file.stat().st_mtime
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except OSError:
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# This is thrown when the file does not exist.
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continue
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seen_files.add(file)
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yield file, mtime
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@classmethod
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def check_availability(cls):
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return True
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class WatchmanUnavailable(RuntimeError):
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pass
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class WatchmanReloader(BaseReloader):
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def __init__(self):
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self.roots = defaultdict(set)
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self.processed_request = threading.Event()
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self.client_timeout = int(os.environ.get('DJANGO_WATCHMAN_TIMEOUT', 5))
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super().__init__()
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@cached_property
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def client(self):
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return pywatchman.client(timeout=self.client_timeout)
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def _watch_root(self, root):
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# In practice this shouldn't occur, however, it's possible that a
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# directory that doesn't exist yet is being watched. If it's outside of
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# sys.path then this will end up a new root. How to handle this isn't
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# clear: Not adding the root will likely break when subscribing to the
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# changes, however, as this is currently an internal API, no files
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# will be being watched outside of sys.path. Fixing this by checking
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# inside watch_glob() and watch_dir() is expensive, instead this could
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# could fall back to the StatReloader if this case is detected? For
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# now, watching its parent, if possible, is sufficient.
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if not root.exists():
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if not root.parent.exists():
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logger.warning('Unable to watch root dir %s as neither it or its parent exist.', root)
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return
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root = root.parent
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result = self.client.query('watch-project', str(root.absolute()))
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if 'warning' in result:
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logger.warning('Watchman warning: %s', result['warning'])
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logger.debug('Watchman watch-project result: %s', result)
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return result['watch'], result.get('relative_path')
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@functools.lru_cache()
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def _get_clock(self, root):
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return self.client.query('clock', root)['clock']
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def _subscribe(self, directory, name, expression):
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root, rel_path = self._watch_root(directory)
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query = {
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'expression': expression,
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'fields': ['name'],
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'since': self._get_clock(root),
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'dedup_results': True,
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}
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if rel_path:
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query['relative_root'] = rel_path
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logger.debug('Issuing watchman subscription %s, for root %s. Query: %s', name, root, query)
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self.client.query('subscribe', root, name, query)
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def _subscribe_dir(self, directory, filenames):
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if not directory.exists():
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if not directory.parent.exists():
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logger.warning('Unable to watch directory %s as neither it or its parent exist.', directory)
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return
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prefix = 'files-parent-%s' % directory.name
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filenames = ['%s/%s' % (directory.name, filename) for filename in filenames]
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directory = directory.parent
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expression = ['name', filenames, 'wholename']
|
||
|
else:
|
||
|
prefix = 'files'
|
||
|
expression = ['name', filenames]
|
||
|
self._subscribe(directory, '%s:%s' % (prefix, directory), expression)
|
||
|
|
||
|
def _watch_glob(self, directory, patterns):
|
||
|
"""
|
||
|
Watch a directory with a specific glob. If the directory doesn't yet
|
||
|
exist, attempt to watch the parent directory and amend the patterns to
|
||
|
include this. It's important this method isn't called more than one per
|
||
|
directory when updating all subscriptions. Subsequent calls will
|
||
|
overwrite the named subscription, so it must include all possible glob
|
||
|
expressions.
|
||
|
"""
|
||
|
prefix = 'glob'
|
||
|
if not directory.exists():
|
||
|
if not directory.parent.exists():
|
||
|
logger.warning('Unable to watch directory %s as neither it or its parent exist.', directory)
|
||
|
return
|
||
|
prefix = 'glob-parent-%s' % directory.name
|
||
|
patterns = ['%s/%s' % (directory.name, pattern) for pattern in patterns]
|
||
|
directory = directory.parent
|
||
|
|
||
|
expression = ['anyof']
|
||
|
for pattern in patterns:
|
||
|
expression.append(['match', pattern, 'wholename'])
|
||
|
self._subscribe(directory, '%s:%s' % (prefix, directory), expression)
|
||
|
|
||
|
def watched_roots(self, watched_files):
|
||
|
extra_directories = self.directory_globs.keys()
|
||
|
watched_file_dirs = [f.parent for f in watched_files]
|
||
|
sys_paths = list(sys_path_directories())
|
||
|
return frozenset((*extra_directories, *watched_file_dirs, *sys_paths))
|
||
|
|
||
|
def _update_watches(self):
|
||
|
watched_files = list(self.watched_files(include_globs=False))
|
||
|
found_roots = common_roots(self.watched_roots(watched_files))
|
||
|
logger.debug('Watching %s files', len(watched_files))
|
||
|
logger.debug('Found common roots: %s', found_roots)
|
||
|
# Setup initial roots for performance, shortest roots first.
|
||
|
for root in sorted(found_roots):
|
||
|
self._watch_root(root)
|
||
|
for directory, patterns in self.directory_globs.items():
|
||
|
self._watch_glob(directory, patterns)
|
||
|
# Group sorted watched_files by their parent directory.
|
||
|
sorted_files = sorted(watched_files, key=lambda p: p.parent)
|
||
|
for directory, group in itertools.groupby(sorted_files, key=lambda p: p.parent):
|
||
|
# These paths need to be relative to the parent directory.
|
||
|
self._subscribe_dir(directory, [str(p.relative_to(directory)) for p in group])
|
||
|
|
||
|
def update_watches(self):
|
||
|
try:
|
||
|
self._update_watches()
|
||
|
except Exception as ex:
|
||
|
# If the service is still available, raise the original exception.
|
||
|
if self.check_server_status(ex):
|
||
|
raise
|
||
|
|
||
|
def _check_subscription(self, sub):
|
||
|
subscription = self.client.getSubscription(sub)
|
||
|
if not subscription:
|
||
|
return
|
||
|
logger.debug('Watchman subscription %s has results.', sub)
|
||
|
for result in subscription:
|
||
|
# When using watch-project, it's not simple to get the relative
|
||
|
# directory without storing some specific state. Store the full
|
||
|
# path to the directory in the subscription name, prefixed by its
|
||
|
# type (glob, files).
|
||
|
root_directory = Path(result['subscription'].split(':', 1)[1])
|
||
|
logger.debug('Found root directory %s', root_directory)
|
||
|
for file in result.get('files', []):
|
||
|
self.notify_file_changed(root_directory / file)
|
||
|
|
||
|
def request_processed(self, **kwargs):
|
||
|
logger.debug('Request processed. Setting update_watches event.')
|
||
|
self.processed_request.set()
|
||
|
|
||
|
def tick(self):
|
||
|
request_finished.connect(self.request_processed)
|
||
|
self.update_watches()
|
||
|
while True:
|
||
|
if self.processed_request.is_set():
|
||
|
self.update_watches()
|
||
|
self.processed_request.clear()
|
||
|
try:
|
||
|
self.client.receive()
|
||
|
except pywatchman.SocketTimeout:
|
||
|
pass
|
||
|
except pywatchman.WatchmanError as ex:
|
||
|
logger.debug('Watchman error: %s, checking server status.', ex)
|
||
|
self.check_server_status(ex)
|
||
|
else:
|
||
|
for sub in list(self.client.subs.keys()):
|
||
|
self._check_subscription(sub)
|
||
|
yield
|
||
|
|
||
|
def stop(self):
|
||
|
self.client.close()
|
||
|
super().stop()
|
||
|
|
||
|
def check_server_status(self, inner_ex=None):
|
||
|
"""Return True if the server is available."""
|
||
|
try:
|
||
|
self.client.query('version')
|
||
|
except Exception:
|
||
|
raise WatchmanUnavailable(str(inner_ex)) from inner_ex
|
||
|
return True
|
||
|
|
||
|
@classmethod
|
||
|
def check_availability(cls):
|
||
|
if not pywatchman:
|
||
|
raise WatchmanUnavailable('pywatchman not installed.')
|
||
|
client = pywatchman.client(timeout=0.1)
|
||
|
try:
|
||
|
result = client.capabilityCheck()
|
||
|
except Exception:
|
||
|
# The service is down?
|
||
|
raise WatchmanUnavailable('Cannot connect to the watchman service.')
|
||
|
version = get_version_tuple(result['version'])
|
||
|
# Watchman 4.9 includes multiple improvements to watching project
|
||
|
# directories as well as case insensitive filesystems.
|
||
|
logger.debug('Watchman version %s', version)
|
||
|
if version < (4, 9):
|
||
|
raise WatchmanUnavailable('Watchman 4.9 or later is required.')
|
||
|
|
||
|
|
||
|
def get_reloader():
|
||
|
"""Return the most suitable reloader for this environment."""
|
||
|
try:
|
||
|
WatchmanReloader.check_availability()
|
||
|
except WatchmanUnavailable:
|
||
|
return StatReloader()
|
||
|
return WatchmanReloader()
|
||
|
|
||
|
|
||
|
def start_django(reloader, main_func, *args, **kwargs):
|
||
|
ensure_echo_on()
|
||
|
|
||
|
main_func = check_errors(main_func)
|
||
|
django_main_thread = threading.Thread(target=main_func, args=args, kwargs=kwargs, name='django-main-thread')
|
||
|
django_main_thread.setDaemon(True)
|
||
|
django_main_thread.start()
|
||
|
|
||
|
while not reloader.should_stop:
|
||
|
try:
|
||
|
reloader.run(django_main_thread)
|
||
|
except WatchmanUnavailable as ex:
|
||
|
# It's possible that the watchman service shuts down or otherwise
|
||
|
# becomes unavailable. In that case, use the StatReloader.
|
||
|
reloader = StatReloader()
|
||
|
logger.error('Error connecting to Watchman: %s', ex)
|
||
|
logger.info('Watching for file changes with %s', reloader.__class__.__name__)
|
||
|
|
||
|
|
||
|
def run_with_reloader(main_func, *args, **kwargs):
|
||
|
signal.signal(signal.SIGTERM, lambda *args: sys.exit(0))
|
||
|
try:
|
||
|
if os.environ.get(DJANGO_AUTORELOAD_ENV) == 'true':
|
||
|
reloader = get_reloader()
|
||
|
logger.info('Watching for file changes with %s', reloader.__class__.__name__)
|
||
|
start_django(reloader, main_func, *args, **kwargs)
|
||
|
else:
|
||
|
exit_code = restart_with_reloader()
|
||
|
sys.exit(exit_code)
|
||
|
except KeyboardInterrupt:
|
||
|
pass
|