Erster Stand der Hintergrundprozesse, die auf der Synology unter /volume1/homes/wagner/SolarManager laufen: der Manager selbst, die Sammler je Geraet, die MQTT-Bruecke, der Wecker und - neu hinzugezogen - der AutoAction-Runner, der als Hintergrundprozess hierher gehoert und nicht ins Web-Verzeichnis. Zugangsdaten stehen nicht mehr im Quelltext, sondern in config.ini, die nicht mit eingecheckt wird. Vorlage ist config.ini.example, gelesen wird sie von konfig.py. Betroffen waren solarManager.py (Datenbank und Wattpilot), zeit.py, gatherWaterData.py, wecker.py und skoda_testdaten.py, das sich das Passwort bisher aus dem Quelltext eines anderen Moduls herausgesucht hat. Die Kia-Anbindung ist mit dem Fahrzeug entfallen: kiaTest.py, gatherCarData.py und hyundai_kia_connect_api sind nicht mehr dabei, ebenso gatherInverterData.py, auf das nur noch eine auskommentierte Zeile zeigte. Die mitgelieferten Bibliotheken bleiben im Repository - die NAS hat kein pip, sie muessen neben den Skripten liegen. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
259 lines
8.3 KiB
Python
259 lines
8.3 KiB
Python
#! python
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#
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# Backend for Silicon Labs CP2110/4 HID-to-UART devices.
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#
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# This file is part of pySerial. https://github.com/pyserial/pyserial
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# (C) 2001-2015 Chris Liechti <cliechti@gmx.net>
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# (C) 2019 Google LLC
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#
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# SPDX-License-Identifier: BSD-3-Clause
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# This backend implements support for HID-to-UART devices manufactured
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# by Silicon Labs and marketed as CP2110 and CP2114. The
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# implementation is (mostly) OS-independent and in userland. It relies
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# on cython-hidapi (https://github.com/trezor/cython-hidapi).
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# The HID-to-UART protocol implemented by CP2110/4 is described in the
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# AN434 document from Silicon Labs:
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# https://www.silabs.com/documents/public/application-notes/AN434-CP2110-4-Interface-Specification.pdf
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# TODO items:
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# - rtscts support is configured for hardware flow control, but the
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# signaling is missing (AN434 suggests this is done through GPIO).
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# - Cancelling reads and writes is not supported.
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# - Baudrate validation is not implemented, as it depends on model and configuration.
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import struct
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import threading
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try:
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import urlparse
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except ImportError:
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import urllib.parse as urlparse
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try:
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import Queue
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except ImportError:
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import queue as Queue
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import hid # hidapi
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import serial
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from serial.serialutil import SerialBase, SerialException, PortNotOpenError, to_bytes, Timeout
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# Report IDs and related constant
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_REPORT_GETSET_UART_ENABLE = 0x41
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_DISABLE_UART = 0x00
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_ENABLE_UART = 0x01
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_REPORT_SET_PURGE_FIFOS = 0x43
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_PURGE_TX_FIFO = 0x01
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_PURGE_RX_FIFO = 0x02
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_REPORT_GETSET_UART_CONFIG = 0x50
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_REPORT_SET_TRANSMIT_LINE_BREAK = 0x51
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_REPORT_SET_STOP_LINE_BREAK = 0x52
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class Serial(SerialBase):
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# This is not quite correct. AN343 specifies that the minimum
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# baudrate is different between CP2110 and CP2114, and it's halved
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# when using non-8-bit symbols.
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BAUDRATES = (300, 375, 600, 1200, 1800, 2400, 4800, 9600, 19200,
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38400, 57600, 115200, 230400, 460800, 500000, 576000,
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921600, 1000000)
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def __init__(self, *args, **kwargs):
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self._hid_handle = None
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self._read_buffer = None
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self._thread = None
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super(Serial, self).__init__(*args, **kwargs)
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def open(self):
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if self._port is None:
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raise SerialException("Port must be configured before it can be used.")
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if self.is_open:
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raise SerialException("Port is already open.")
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self._read_buffer = Queue.Queue()
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self._hid_handle = hid.device()
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try:
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portpath = self.from_url(self.portstr)
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self._hid_handle.open_path(portpath)
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except OSError as msg:
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raise SerialException(msg.errno, "could not open port {}: {}".format(self._port, msg))
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try:
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self._reconfigure_port()
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except:
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try:
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self._hid_handle.close()
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except:
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pass
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self._hid_handle = None
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raise
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else:
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self.is_open = True
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self._thread = threading.Thread(target=self._hid_read_loop)
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self._thread.daemon = True
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self._thread.setName('pySerial CP2110 reader thread for {}'.format(self._port))
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self._thread.start()
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def from_url(self, url):
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parts = urlparse.urlsplit(url)
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if parts.scheme != "cp2110":
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raise SerialException(
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'expected a string in the forms '
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'"cp2110:///dev/hidraw9" or "cp2110://0001:0023:00": '
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'not starting with cp2110:// {{!r}}'.format(parts.scheme))
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if parts.netloc: # cp2100://BUS:DEVICE:ENDPOINT, for libusb
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return parts.netloc.encode('utf-8')
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return parts.path.encode('utf-8')
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def close(self):
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self.is_open = False
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if self._thread:
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self._thread.join(1) # read timeout is 0.1
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self._thread = None
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self._hid_handle.close()
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self._hid_handle = None
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def _reconfigure_port(self):
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parity_value = None
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if self._parity == serial.PARITY_NONE:
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parity_value = 0x00
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elif self._parity == serial.PARITY_ODD:
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parity_value = 0x01
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elif self._parity == serial.PARITY_EVEN:
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parity_value = 0x02
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elif self._parity == serial.PARITY_MARK:
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parity_value = 0x03
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elif self._parity == serial.PARITY_SPACE:
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parity_value = 0x04
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else:
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raise ValueError('Invalid parity: {!r}'.format(self._parity))
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if self.rtscts:
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flow_control_value = 0x01
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else:
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flow_control_value = 0x00
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data_bits_value = None
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if self._bytesize == 5:
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data_bits_value = 0x00
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elif self._bytesize == 6:
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data_bits_value = 0x01
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elif self._bytesize == 7:
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data_bits_value = 0x02
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elif self._bytesize == 8:
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data_bits_value = 0x03
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else:
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raise ValueError('Invalid char len: {!r}'.format(self._bytesize))
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stop_bits_value = None
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if self._stopbits == serial.STOPBITS_ONE:
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stop_bits_value = 0x00
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elif self._stopbits == serial.STOPBITS_ONE_POINT_FIVE:
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stop_bits_value = 0x01
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elif self._stopbits == serial.STOPBITS_TWO:
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stop_bits_value = 0x01
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else:
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raise ValueError('Invalid stop bit specification: {!r}'.format(self._stopbits))
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configuration_report = struct.pack(
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'>BLBBBB',
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_REPORT_GETSET_UART_CONFIG,
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self._baudrate,
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parity_value,
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flow_control_value,
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data_bits_value,
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stop_bits_value)
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self._hid_handle.send_feature_report(configuration_report)
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self._hid_handle.send_feature_report(
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bytes((_REPORT_GETSET_UART_ENABLE, _ENABLE_UART)))
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self._update_break_state()
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@property
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def in_waiting(self):
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return self._read_buffer.qsize()
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def reset_input_buffer(self):
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if not self.is_open:
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raise PortNotOpenError()
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self._hid_handle.send_feature_report(
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bytes((_REPORT_SET_PURGE_FIFOS, _PURGE_RX_FIFO)))
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# empty read buffer
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while self._read_buffer.qsize():
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self._read_buffer.get(False)
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def reset_output_buffer(self):
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if not self.is_open:
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raise PortNotOpenError()
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self._hid_handle.send_feature_report(
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bytes((_REPORT_SET_PURGE_FIFOS, _PURGE_TX_FIFO)))
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def _update_break_state(self):
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if not self._hid_handle:
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raise PortNotOpenError()
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if self._break_state:
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self._hid_handle.send_feature_report(
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bytes((_REPORT_SET_TRANSMIT_LINE_BREAK, 0)))
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else:
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# Note that while AN434 states "There are no data bytes in
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# the payload other than the Report ID", either hidapi or
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# Linux does not seem to send the report otherwise.
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self._hid_handle.send_feature_report(
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bytes((_REPORT_SET_STOP_LINE_BREAK, 0)))
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def read(self, size=1):
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if not self.is_open:
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raise PortNotOpenError()
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data = bytearray()
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try:
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timeout = Timeout(self._timeout)
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while len(data) < size:
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if self._thread is None:
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raise SerialException('connection failed (reader thread died)')
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buf = self._read_buffer.get(True, timeout.time_left())
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if buf is None:
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return bytes(data)
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data += buf
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if timeout.expired():
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break
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except Queue.Empty: # -> timeout
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pass
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return bytes(data)
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def write(self, data):
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if not self.is_open:
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raise PortNotOpenError()
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data = to_bytes(data)
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tx_len = len(data)
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while tx_len > 0:
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to_be_sent = min(tx_len, 0x3F)
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report = to_bytes([to_be_sent]) + data[:to_be_sent]
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self._hid_handle.write(report)
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data = data[to_be_sent:]
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tx_len = len(data)
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def _hid_read_loop(self):
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try:
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while self.is_open:
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data = self._hid_handle.read(64, timeout_ms=100)
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if not data:
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continue
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data_len = data.pop(0)
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assert data_len == len(data)
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self._read_buffer.put(bytearray(data))
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finally:
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self._thread = None
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