476 lines
15 KiB
Python
476 lines
15 KiB
Python
from supervisor import ticks_ms
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from kmk.consts import KMK_RELEASE, UnicodeMode
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from kmk.hid import BLEHID, USBHID, AbstractHID, HIDModes
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from kmk.keys import KC
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from kmk.matrix import MatrixScanner, intify_coordinate
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class Sandbox:
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matrix_update = None
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secondary_matrix_update = None
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active_layers = None
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class KMKKeyboard:
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#####
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# User-configurable
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debug_enabled = False
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keymap = []
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coord_mapping = None
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row_pins = None
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col_pins = None
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diode_orientation = None
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matrix = None
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matrix_scanner = MatrixScanner
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uart_buffer = []
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unicode_mode = UnicodeMode.NOOP
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modules = []
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extensions = []
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sandbox = Sandbox()
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#####
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# Internal State
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keys_pressed = set()
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_coordkeys_pressed = {}
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hid_type = HIDModes.USB
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secondary_hid_type = None
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_hid_helper = None
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_hid_send_enabled = False
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hid_pending = False
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current_key = None
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matrix_update = None
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secondary_matrix_update = None
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matrix_update_queue = []
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_matrix_modify = None
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state_changed = False
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_old_timeouts_len = None
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_new_timeouts_len = None
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_trigger_powersave_enable = False
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_trigger_powersave_disable = False
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i2c_deinit_count = 0
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_go_args = None
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# this should almost always be PREpended to, replaces
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# former use of reversed_active_layers which had pointless
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# overhead (the underlying list was never used anyway)
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active_layers = [0]
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_timeouts = {}
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# on some M4 setups (such as klardotsh/klarank_feather_m4, CircuitPython
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# 6.0rc1) this runs out of RAM every cycle and takes down the board. no
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# real known fix yet other than turning off debug, but M4s have always been
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# tight on RAM so....
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def __repr__(self):
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return (
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'KMKKeyboard('
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'debug_enabled={} '
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'diode_orientation={} '
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'matrix_scanner={} '
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'unicode_mode={} '
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'_hid_helper={} '
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'keys_pressed={} '
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'coordkeys_pressed={} '
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'hid_pending={} '
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'active_layers={} '
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'timeouts={} '
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')'
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).format(
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self.debug_enabled,
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self.diode_orientation,
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self.matrix_scanner,
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self.unicode_mode,
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self._hid_helper,
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# internal state
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self.keys_pressed,
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self._coordkeys_pressed,
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self.hid_pending,
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self.active_layers,
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self._timeouts,
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)
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def _print_debug_cycle(self, init=False):
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if self.debug_enabled:
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if init:
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print('KMKInit(release={})'.format(KMK_RELEASE))
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print(self)
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def _send_hid(self):
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if self._hid_send_enabled:
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hid_report = self._hid_helper.create_report(self.keys_pressed)
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try:
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hid_report.send()
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except KeyError as e:
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if self.debug_enabled:
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print('HidNotFound(HIDReportType={})'.format(e))
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self.hid_pending = False
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def _handle_matrix_report(self, update=None):
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if update is not None:
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self._on_matrix_changed(update[0], update[1], update[2])
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self.state_changed = True
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def _find_key_in_map(self, int_coord, row, col):
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try:
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idx = self.coord_mapping.index(int_coord)
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except ValueError:
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if self.debug_enabled:
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print(
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'CoordMappingNotFound(ic={}, row={}, col={})'.format(
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int_coord, row, col
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)
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)
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return None
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for layer in self.active_layers:
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try:
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layer_key = self.keymap[layer][idx]
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except IndexError:
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layer_key = None
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if self.debug_enabled:
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print(f'KeymapIndexError(idx={idx}, layer={layer})')
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if not layer_key or layer_key == KC.TRNS:
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continue
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if self.debug_enabled:
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print('KeyResolution(key={})'.format(layer_key))
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return layer_key
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def _on_matrix_changed(self, row, col, is_pressed):
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if self.debug_enabled:
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print('MatrixChange(col={} row={} pressed={})'.format(col, row, is_pressed))
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int_coord = intify_coordinate(row, col)
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if not is_pressed:
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self.current_key = self._coordkeys_pressed[int_coord]
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if self.debug_enabled:
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print('PressedKeyResolution(key={})'.format(self.current_key))
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if self.current_key is None:
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self.current_key = self._find_key_in_map(int_coord, row, col)
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if self.current_key is None:
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print('MatrixUndefinedCoordinate(col={} row={})'.format(col, row))
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return self
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for module in self.modules:
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try:
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self.current_key = module.process_key(
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self, self.current_key, is_pressed, int_coord
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)
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if self.current_key is None:
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break
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run process_key function in module: ', err, module)
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if is_pressed:
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self._coordkeys_pressed[int_coord] = self.current_key
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else:
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del self._coordkeys_pressed[int_coord]
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if self.current_key:
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self.process_key(self.current_key, is_pressed, int_coord, (row, col))
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return self
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def process_key(self, key, is_pressed, coord_int=None, coord_raw=None):
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if is_pressed:
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key.on_press(self, coord_int, coord_raw)
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else:
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key.on_release(self, coord_int, coord_raw)
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return self
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def remove_key(self, keycode):
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self.keys_pressed.discard(keycode)
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return self.process_key(keycode, False)
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def add_key(self, keycode):
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self.keys_pressed.add(keycode)
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return self.process_key(keycode, True)
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def tap_key(self, keycode):
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self.add_key(keycode)
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# On the next cycle, we'll remove the key.
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self.set_timeout(False, lambda: self.remove_key(keycode))
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return self
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def set_timeout(self, after_ticks, callback):
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if after_ticks is False:
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# We allow passing False as an implicit "run this on the next process timeouts cycle"
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timeout_key = ticks_ms()
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else:
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timeout_key = ticks_ms() + after_ticks
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while timeout_key in self._timeouts:
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timeout_key += 1
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self._timeouts[timeout_key] = callback
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return timeout_key
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def cancel_timeout(self, timeout_key):
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if timeout_key in self._timeouts:
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del self._timeouts[timeout_key]
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def _process_timeouts(self):
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if not self._timeouts:
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return self
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current_time = ticks_ms()
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# cast this to a tuple to ensure that if a callback itself sets
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# timeouts, we do not handle them on the current cycle
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timeouts = tuple(self._timeouts.items())
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for k, v in timeouts:
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if k <= current_time:
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v()
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del self._timeouts[k]
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return self
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def _init_sanity_check(self):
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'''
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Ensure the provided configuration is *probably* bootable
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'''
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assert self.keymap, 'must define a keymap with at least one row'
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assert self.row_pins, 'no GPIO pins defined for matrix rows'
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assert self.col_pins, 'no GPIO pins defined for matrix columns'
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assert self.diode_orientation is not None, 'diode orientation must be defined'
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assert (
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self.hid_type in HIDModes.ALL_MODES
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), 'hid_type must be a value from kmk.consts.HIDModes'
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return self
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def _init_coord_mapping(self):
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'''
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Attempt to sanely guess a coord_mapping if one is not provided. No-op
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if `kmk.extensions.split.Split` is used, it provides equivalent
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functionality in `on_bootup`
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To save RAM on boards that don't use Split, we don't import Split
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and do an isinstance check, but instead do string detection
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'''
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if any(x.__class__.__module__ == 'kmk.modules.split' for x in self.modules):
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return
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if not self.coord_mapping:
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self.coord_mapping = []
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rows_to_calc = len(self.row_pins)
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cols_to_calc = len(self.col_pins)
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for ridx in range(rows_to_calc):
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for cidx in range(cols_to_calc):
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self.coord_mapping.append(intify_coordinate(ridx, cidx))
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def _init_hid(self):
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if self.hid_type == HIDModes.NOOP:
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self._hid_helper = AbstractHID
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elif self.hid_type == HIDModes.USB:
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self._hid_helper = USBHID
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elif self.hid_type == HIDModes.BLE:
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self._hid_helper = BLEHID
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else:
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self._hid_helper = AbstractHID
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self._hid_helper = self._hid_helper(**self._go_args)
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self._hid_send_enabled = True
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def _init_matrix(self):
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self.matrix = self.matrix_scanner(
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cols=self.col_pins,
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rows=self.row_pins,
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diode_orientation=self.diode_orientation,
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rollover_cols_every_rows=getattr(self, 'rollover_cols_every_rows', None),
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)
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return self
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def before_matrix_scan(self):
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for module in self.modules:
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try:
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module.before_matrix_scan(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run pre matrix function in module: ', err, module)
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for ext in self.extensions:
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try:
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ext.before_matrix_scan(self.sandbox)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run pre matrix function in extension: ', err, ext)
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def after_matrix_scan(self):
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for module in self.modules:
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try:
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module.after_matrix_scan(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post matrix function in module: ', err, module)
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for ext in self.extensions:
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try:
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ext.after_matrix_scan(self.sandbox)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post matrix function in extension: ', err, ext)
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def before_hid_send(self):
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for module in self.modules:
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try:
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module.before_hid_send(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run pre hid function in module: ', err, module)
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for ext in self.extensions:
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try:
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ext.before_hid_send(self.sandbox)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run pre hid function in extension: ', err, ext)
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def after_hid_send(self):
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for module in self.modules:
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try:
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module.after_hid_send(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post hid function in module: ', err, module)
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for ext in self.extensions:
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try:
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ext.after_hid_send(self.sandbox)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post hid function in extension: ', err, ext)
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def powersave_enable(self):
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for module in self.modules:
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try:
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module.on_powersave_enable(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post hid function in module: ', err, module)
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for ext in self.extensions:
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try:
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ext.on_powersave_enable(self.sandbox)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post hid function in extension: ', err, ext)
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def powersave_disable(self):
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for module in self.modules:
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try:
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module.on_powersave_disable(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post hid function in module: ', err, module)
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for ext in self.extensions:
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try:
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ext.on_powersave_disable(self.sandbox)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to run post hid function in extension: ', err, ext)
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def go(self, hid_type=HIDModes.USB, secondary_hid_type=None, **kwargs):
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self._init(hid_type=hid_type, secondary_hid_type=secondary_hid_type, **kwargs)
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while True:
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self._main_loop()
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def _init(self, hid_type=HIDModes.USB, secondary_hid_type=None, **kwargs):
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self._go_args = kwargs
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self.hid_type = hid_type
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self.secondary_hid_type = secondary_hid_type
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self._init_sanity_check()
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self._init_coord_mapping()
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self._init_hid()
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for module in self.modules:
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try:
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module.during_bootup(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to load module', err, module)
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print()
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for ext in self.extensions:
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try:
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ext.during_bootup(self)
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except Exception as err:
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if self.debug_enabled:
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print('Failed to load extension', err, ext)
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self._init_matrix()
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self._print_debug_cycle(init=True)
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def _main_loop(self):
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self.current_key = None
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self.state_changed = False
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self.sandbox.active_layers = self.active_layers.copy()
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self.before_matrix_scan()
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self.matrix_update = self.sandbox.matrix_update = self.matrix.scan_for_changes()
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self.sandbox.secondary_matrix_update = self.secondary_matrix_update
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self.after_matrix_scan()
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if self.secondary_matrix_update:
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# bytearray constructor here to produce a copy
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# otherwise things get strange when self.secondary_matrix_update
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# gets modified.
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self.matrix_update_queue.append(bytearray(self.secondary_matrix_update))
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self.secondary_matrix_update = None
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if self.matrix_update:
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# bytearray constructor here to produce a copy
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# otherwise things get strange when self.matrix_update
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# gets modified.
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self.matrix_update_queue.append(bytearray(self.matrix_update))
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self.matrix_update = None
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# only handle one key per cycle.
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if self.matrix_update_queue:
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self._handle_matrix_report(self.matrix_update_queue.pop(0))
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self.before_hid_send()
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if self.hid_pending:
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self._send_hid()
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self._old_timeouts_len = len(self._timeouts)
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self._process_timeouts()
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self._new_timeouts_len = len(self._timeouts)
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if self._old_timeouts_len != self._new_timeouts_len:
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self.state_changed = True
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if self.hid_pending:
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self._send_hid()
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self.after_hid_send()
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if self._trigger_powersave_enable:
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self.powersave_enable()
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if self._trigger_powersave_disable:
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self.powersave_disable()
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if self.state_changed:
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self._print_debug_cycle()
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