mirror of
https://github.com/sezanzeb/input-remapper
synced 2024-11-10 01:13:29 +00:00
494 lines
16 KiB
Python
494 lines
16 KiB
Python
#!/usr/bin/python3
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# -*- coding: utf-8 -*-
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# key-mapper - GUI for device specific keyboard mappings
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# Copyright (C) 2020 sezanzeb <proxima@hip70890b.de>
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#
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# This file is part of key-mapper.
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#
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# key-mapper is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# key-mapper is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with key-mapper. If not, see <https://www.gnu.org/licenses/>.
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"""Keeps injecting keycodes in the background based on the mapping."""
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import re
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import asyncio
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import time
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import subprocess
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import multiprocessing
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import evdev
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from evdev.ecodes import EV_KEY, EV_ABS, EV_REL
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from keymapper.logger import logger
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from keymapper.getdevices import get_devices, map_abs_to_rel
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from keymapper.dev.keycode_mapper import handle_keycode, \
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should_map_event_as_btn
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from keymapper.dev.ev_abs_mapper import ev_abs_mapper, JOYSTICK
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from keymapper.dev.macros import parse, is_this_a_macro
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from keymapper.state import system_mapping
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DEV_NAME = 'key-mapper'
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CLOSE = 0
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def is_numlock_on():
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"""Get the current state of the numlock."""
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try:
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xset_q = subprocess.check_output(['xset', 'q']).decode()
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num_lock_status = re.search(
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r'Num Lock:\s+(.+?)\s',
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xset_q
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)
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if num_lock_status is not None:
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return num_lock_status[1] == 'on'
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return False
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except subprocess.CalledProcessError:
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# tty
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return None
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def set_numlock(state):
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"""Set the numlock to a given state of True or False."""
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if state is None:
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return
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value = {
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True: 'on',
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False: 'off'
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}[state]
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try:
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subprocess.check_output(['numlockx', value])
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except subprocess.CalledProcessError:
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# might be in a tty
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pass
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except FileNotFoundError:
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# doesn't seem to be installed everywhere
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logger.debug('numlockx not found')
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def ensure_numlock(func):
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"""Decorator to reset the numlock to its initial state afterwards."""
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def wrapped(*args, **kwargs):
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# for some reason, grabbing a device can modify the num lock state.
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# remember it and apply back later
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numlock_before = is_numlock_on()
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result = func(*args, **kwargs)
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set_numlock(numlock_before)
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return result
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return wrapped
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def is_in_capabilities(key, capabilities):
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"""Are this key or one of its sub keys in the capabilities?
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Parameters
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----------
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key : Key
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"""
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for sub_key in key:
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if sub_key[1] in capabilities.get(sub_key[0], []):
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return True
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return False
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class KeycodeInjector:
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"""Keeps injecting keycodes in the background based on the mapping.
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Is a process to make it non-blocking for the rest of the code and to
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make running multiple injector easier. There is one procss per
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hardware-device that is being mapped.
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"""
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regrab_timeout = 0.5
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def __init__(self, device, mapping):
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"""Start injecting keycodes based on custom_mapping.
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Parameters
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----------
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device : string
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the name of the device as available in get_device
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mapping : Mapping
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"""
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self.device = device
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self.mapping = mapping
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self._process = None
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self._msg_pipe = multiprocessing.Pipe()
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self._key_to_code = self._map_keys_to_codes()
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self.stopped = False
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# when moving the joystick and then staying at a position, no
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# events will be written anymore. Remember the last value the
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# joystick reported, because it is still remaining at that
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# position.
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self.abs_state = [0, 0, 0, 0]
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def _map_keys_to_codes(self):
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"""To quickly get target keycodes during operation.
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Returns a mapping of one or more 3-tuples to ints.
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Examples:
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((1, 2, 1),): 3
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((1, 5, 1), (1, 4, 1)): 4
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"""
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key_to_code = {}
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for key, output in self.mapping:
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if is_this_a_macro(output):
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continue
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target_code = system_mapping.get(output)
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if target_code is None:
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logger.error('Don\'t know what %s is', output)
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continue
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for permutation in key.get_permutations():
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key_to_code[permutation.keys] = target_code
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return key_to_code
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def start_injecting(self):
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"""Start injecting keycodes."""
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if self.stopped or self._process is not None:
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# So that there is less concern about integrity when putting
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# stuff into self. Each injector object can only be
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# started once.
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raise Exception('Please construct a new injector instead')
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if self.device not in get_devices():
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logger.error('Cannot inject for unknown device "%s"', self.device)
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return
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self._process = multiprocessing.Process(target=self._start_injecting)
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self._process.start()
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def _prepare_device(self, path):
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"""Try to grab the device, return if not needed/possible.
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Also return if ABS events are changed to REL mouse movements,
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because the capabilities of the returned device are changed
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so this cannot be checked later anymore.
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"""
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try:
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device = evdev.InputDevice(path)
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except FileNotFoundError:
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return None, False
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capabilities = device.capabilities(absinfo=False)
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needed = False
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for key, _ in self.mapping:
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if is_in_capabilities(key, capabilities):
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needed = True
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break
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abs_to_rel = map_abs_to_rel(capabilities)
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if abs_to_rel:
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needed = True
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if not needed:
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# skipping reading and checking on events from those devices
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# may be beneficial for performance.
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logger.debug('No need to grab %s', path)
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return None, False
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attempts = 0
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while True:
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try:
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# grab to avoid e.g. the disabled keycode of 10 to confuse
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# X, especially when one of the buttons of your mouse also
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# uses 10. This also avoids having to load an empty xkb
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# symbols file to prevent writing any unwanted keys.
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device.grab()
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logger.debug('Grab %s', path)
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break
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except IOError:
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attempts += 1
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# it might take a little time until the device is free if
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# it was previously grabbed.
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logger.debug('Failed attemts to grab %s: %d', path, attempts)
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if attempts >= 4:
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logger.error('Cannot grab %s, it is possibly in use', path)
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return None, False
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time.sleep(self.regrab_timeout)
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return device, abs_to_rel
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def _modify_capabilities(self, macros, input_device, abs_to_rel):
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"""Adds all used keycodes into a copy of a devices capabilities.
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A device with those capabilities can do exactly the stuff it needs
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to perform all mappings and macros.
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Prameters
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---------
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macros : dict
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maping of int to _Macro
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input_device : evdev.InputDevice
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abs_to_rel : bool
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if ABS capabilities should be removed in favor of REL
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"""
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ecodes = evdev.ecodes
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# copy the capabilities because the uinput is going
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# to act like the device.
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capabilities = input_device.capabilities(absinfo=False)
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if len(self._key_to_code) > 0 or len(macros) > 0:
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if capabilities.get(EV_KEY) is None:
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capabilities[EV_KEY] = []
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# Furthermore, support all injected keycodes
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for code in self._key_to_code.values():
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if code not in capabilities[EV_KEY]:
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capabilities[EV_KEY].append(code)
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# and all keycodes that are injected by macros
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for macro in macros.values():
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capabilities[EV_KEY] += list(macro.get_capabilities())
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if abs_to_rel:
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# REL_WHEEL was also required to recognize the gamepad
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# as mouse, even if no joystick is used as wheel.
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capabilities[EV_REL] = [
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evdev.ecodes.REL_X,
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evdev.ecodes.REL_Y,
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evdev.ecodes.REL_WHEEL,
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evdev.ecodes.REL_HWHEEL,
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]
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if capabilities.get(EV_KEY) is None:
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capabilities[EV_KEY] = []
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if ecodes.BTN_MOUSE not in capabilities[EV_KEY]:
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# to be able to move the cursor, this key capability is
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# needed
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capabilities[EV_KEY].append(ecodes.BTN_MOUSE)
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# just like what python-evdev does in from_device
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if ecodes.EV_SYN in capabilities:
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del capabilities[ecodes.EV_SYN]
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if ecodes.EV_FF in capabilities:
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del capabilities[ecodes.EV_FF]
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if ecodes.EV_ABS in capabilities:
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# EV_KEY events are ignoerd by the os when EV_ABS capabilities
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# are present
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del capabilities[ecodes.EV_ABS]
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return capabilities
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async def _msg_listener(self, loop):
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"""Wait for messages from the main process to do special stuff."""
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while True:
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frame_available = asyncio.Event()
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loop.add_reader(self._msg_pipe[0].fileno(), frame_available.set)
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await frame_available.wait()
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frame_available.clear()
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msg = self._msg_pipe[0].recv()
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if msg == CLOSE:
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logger.debug('Received close signal')
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# stop the event loop and cause the process to reach its end
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# cleanly. Using .terminate prevents coverage from working.
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loop.stop()
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return
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def _start_injecting(self):
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"""The injection worker that keeps injecting until terminated.
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Stuff is non-blocking by using asyncio in order to do multiple things
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somewhat concurrently.
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"""
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# create a new event loop, because somehow running an infinite loop
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# that sleeps on iterations (ev_abs_mapper) in one process causes
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# another injection process to screw up reading from the grabbed
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# device.
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loop = asyncio.new_event_loop()
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asyncio.set_event_loop(loop)
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numlock_state = is_numlock_on()
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loop = asyncio.get_event_loop()
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coroutines = []
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logger.info('Starting injecting the mapping for "%s"', self.device)
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paths = get_devices()[self.device]['paths']
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"""# in order to map a combination of shift + a to xf86audiomute,
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# key-mapper has to find a way around the systems xkb configs,
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# because X11 won't do shift + xf86audiomute.
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# This special input can write every possible EV_KEY character
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# below 272 (which is mouse-left) without being bothered by
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# modifiers. It has its own special xkb symbols and keycodes files
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# and
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self.special_uinput = evdev.UInput(
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name=f'{DEV_NAME} special {self.device}',
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phys=DEV_NAME,
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events=self._modify_capabilities(macros, source, abs_to_rel)
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)"""
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# Watch over each one of the potentially multiple devices per hardware
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for path in paths:
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source, abs_to_rel = self._prepare_device(path)
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if source is None:
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continue
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# each device needs own macro instances to add a custom handler
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logger.debug('Parsing macros for %s', path)
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macros = {}
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for key, output in self.mapping:
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if is_this_a_macro(output):
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macro = parse(output, self.mapping)
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if macro is None:
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continue
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for permutation in key.get_permutations():
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macros[permutation.keys] = macro
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if len(macros) == 0:
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logger.debug('No macros configured')
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# certain capabilities can have side effects apparently. with an
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# EV_ABS capability, EV_REL won't move the mouse pointer anymore.
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# so don't merge all InputDevices into one UInput device.
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uinput = evdev.UInput(
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name=f'{DEV_NAME} {self.device}',
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phys=DEV_NAME,
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events=self._modify_capabilities(macros, source, abs_to_rel)
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)
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logger.spam(
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'Injected capabilities for "%s": %s',
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path, uinput.capabilities(verbose=True)
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)
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def handler(*args, uinput=uinput):
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# this ensures that the right uinput is used for macro_write,
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# because this is within a loop
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self._macro_write(*args, uinput)
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for macro in macros.values():
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macro.set_handler(handler)
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# keycode injection
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coroutine = self._keycode_loop(macros, source, uinput, abs_to_rel)
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coroutines.append(coroutine)
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# mouse movement injection
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if abs_to_rel:
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self.abs_state[0] = 0
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self.abs_state[1] = 0
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coroutine = ev_abs_mapper(
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self.abs_state,
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source,
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uinput,
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self.mapping
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)
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coroutines.append(coroutine)
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if len(coroutines) == 0:
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logger.error('Did not grab any device')
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return
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coroutines.append(self._msg_listener(loop))
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# set the numlock state to what it was before injecting, because
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# grabbing devices screws this up
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set_numlock(numlock_state)
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try:
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loop.run_until_complete(asyncio.gather(*coroutines))
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except RuntimeError:
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# stopped event loop most likely
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pass
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except OSError as error:
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logger.error(str(error))
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if len(coroutines) > 0:
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logger.debug('asyncio coroutines ended')
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def _macro_write(self, code, value, uinput):
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"""Handler for macros."""
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logger.spam('macro writes code:%s value:%d', code, value)
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uinput.write(EV_KEY, code, value)
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uinput.syn()
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async def _keycode_loop(self, macros, source, uinput, abs_to_rel):
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"""Inject keycodes for one of the virtual devices.
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Can be stopped by stopping the asyncio loop.
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Parameters
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----------
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macros : (int, int) -> _Macro
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macro with a handler that writes to the provided uinput
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source : evdev.InputDevice
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where to read keycodes from
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uinput : evdev.UInput
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where to write keycodes to
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abs_to_rel : bool
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if joystick events should be mapped to mouse movements
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"""
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logger.debug(
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'Started injecting into %s, fd %s',
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uinput.device.path, uinput.fd
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)
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async for event in source.async_read_loop():
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if abs_to_rel and event.type == EV_ABS and event.code in JOYSTICK:
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if event.code == evdev.ecodes.ABS_X:
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self.abs_state[0] = event.value
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elif event.code == evdev.ecodes.ABS_Y:
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self.abs_state[1] = event.value
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elif event.code == evdev.ecodes.ABS_RX:
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self.abs_state[2] = event.value
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elif event.code == evdev.ecodes.ABS_RY:
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self.abs_state[3] = event.value
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continue
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if should_map_event_as_btn(event.type, event.code):
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handle_keycode(
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self._key_to_code,
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macros,
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event,
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uinput
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)
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continue
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# forward the rest
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uinput.write(event.type, event.code, event.value)
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# this already includes SYN events, so need to syn here again
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logger.error(
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'The injector for "%s" stopped early',
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uinput.device.path
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)
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@ensure_numlock
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def stop_injecting(self):
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"""Stop injecting keycodes."""
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logger.info('Stopping injecting keycodes for device "%s"', self.device)
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self._msg_pipe[1].send(CLOSE)
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self.stopped = True
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