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<body>
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<main>
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<article id="content">
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<header>
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<h1 class="title">Module <code>meshtastic.stream_interface</code></h1>
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</header>
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<section id="section-intro">
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<p>Stream Interface base class</p>
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<details class="source">
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<summary>
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<span>Expand source code</span>
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</summary>
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<pre><code class="python">""" Stream Interface base class
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"""
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import logging
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import threading
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import time
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import traceback
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import serial
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from .mesh_interface import MeshInterface
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from .util import stripnl
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START1 = 0x94
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START2 = 0xc3
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HEADER_LEN = 4
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MAX_TO_FROM_RADIO_SIZE = 512
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class StreamInterface(MeshInterface):
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"""Interface class for meshtastic devices over a stream link (serial, TCP, etc)"""
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def __init__(self, debugOut=None, noProto=False, connectNow=True):
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"""Constructor, opens a connection to self.stream
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Keyword Arguments:
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devPath {string} -- A filepath to a device, i.e. /dev/ttyUSB0 (default: {None})
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debugOut {stream} -- If a stream is provided, any debug serial output from the device will be emitted to that stream. (default: {None})
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Raises:
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Exception: [description]
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Exception: [description]
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"""
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if not hasattr(self, 'stream'):
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raise Exception(
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"StreamInterface is now abstract (to update existing code create SerialInterface instead)")
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self._rxBuf = bytes() # empty
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self._wantExit = False
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# FIXME, figure out why daemon=True causes reader thread to exit too early
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self._rxThread = threading.Thread(
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target=self.__reader, args=(), daemon=True)
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MeshInterface.__init__(self, debugOut=debugOut, noProto=noProto)
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# Start the reader thread after superclass constructor completes init
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if connectNow:
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self.connect()
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if not noProto:
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self.waitForConfig()
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def connect(self):
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"""Connect to our radio
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Normally this is called automatically by the constructor, but if you passed in connectNow=False you can manually
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start the reading thread later.
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"""
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# Send some bogus UART characters to force a sleeping device to wake, and if the reading statemachine was parsing a bad packet make sure
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# we write enought start bytes to force it to resync (we don't use START1 because we want to ensure it is looking for START1)
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p = bytearray([START2] * 32)
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self._writeBytes(p)
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time.sleep(0.1) # wait 100ms to give device time to start running
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self._rxThread.start()
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self._startConfig()
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if not self.noProto: # Wait for the db download if using the protocol
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self._waitConnected()
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def _disconnected(self):
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"""We override the superclass implementation to close our port"""
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MeshInterface._disconnected(self)
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logging.debug("Closing our port")
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if not self.stream is None:
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self.stream.close()
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self.stream = None
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def _writeBytes(self, b):
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"""Write an array of bytes to our stream and flush"""
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if self.stream: # ignore writes when stream is closed
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self.stream.write(b)
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self.stream.flush()
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def _readBytes(self, length):
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"""Read an array of bytes from our stream"""
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return self.stream.read(length)
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def _sendToRadioImpl(self, toRadio):
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"""Send a ToRadio protobuf to the device"""
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logging.debug(f"Sending: {stripnl(toRadio)}")
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b = toRadio.SerializeToString()
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bufLen = len(b)
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# We convert into a string, because the TCP code doesn't work with byte arrays
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header = bytes([START1, START2, (bufLen >> 8) & 0xff, bufLen & 0xff])
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self._writeBytes(header + b)
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def close(self):
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"""Close a connection to the device"""
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logging.debug("Closing stream")
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MeshInterface.close(self)
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# pyserial cancel_read doesn't seem to work, therefore we ask the reader thread to close things for us
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self._wantExit = True
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if self._rxThread != threading.current_thread():
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self._rxThread.join() # wait for it to exit
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def __reader(self):
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"""The reader thread that reads bytes from our stream"""
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empty = bytes()
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try:
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while not self._wantExit:
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# logging.debug("reading character")
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b = self._readBytes(1)
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# logging.debug("In reader loop")
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# logging.debug(f"read returned {b}")
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if len(b) > 0:
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c = b[0]
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ptr = len(self._rxBuf)
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# Assume we want to append this byte, fixme use bytearray instead
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self._rxBuf = self._rxBuf + b
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if ptr == 0: # looking for START1
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if c != START1:
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self._rxBuf = empty # failed to find start
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if self.debugOut is not None:
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try:
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self.debugOut.write(b.decode("utf-8"))
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except:
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self.debugOut.write('?')
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elif ptr == 1: # looking for START2
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if c != START2:
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self._rxBuf = empty # failed to find start2
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elif ptr >= HEADER_LEN - 1: # we've at least got a header
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# big endian length follos header
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packetlen = (self._rxBuf[2] << 8) + self._rxBuf[3]
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if ptr == HEADER_LEN - 1: # we _just_ finished reading the header, validate length
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if packetlen > MAX_TO_FROM_RADIO_SIZE:
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self._rxBuf = empty # length ws out out bounds, restart
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if len(self._rxBuf) != 0 and ptr + 1 >= packetlen + HEADER_LEN:
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try:
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self._handleFromRadio(self._rxBuf[HEADER_LEN:])
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except Exception as ex:
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logging.error(
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f"Error while handling message from radio {ex}")
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traceback.print_exc()
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self._rxBuf = empty
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else:
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# logging.debug(f"timeout")
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pass
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except serial.SerialException as ex:
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if not self._wantExit: # We might intentionally get an exception during shutdown
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logging.warning(
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f"Meshtastic serial port disconnected, disconnecting... {ex}")
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except OSError as ex:
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if not self._wantExit: # We might intentionally get an exception during shutdown
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logging.error(
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f"Unexpected OSError, terminating meshtastic reader... {ex}")
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except Exception as ex:
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logging.error(
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f"Unexpected exception, terminating meshtastic reader... {ex}")
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finally:
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logging.debug("reader is exiting")
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self._disconnected()</code></pre>
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</details>
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</section>
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<section>
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</section>
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<section>
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</section>
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<section>
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</section>
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<section>
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<h2 class="section-title" id="header-classes">Classes</h2>
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<dl>
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<dt id="meshtastic.stream_interface.StreamInterface"><code class="flex name class">
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<span>class <span class="ident">StreamInterface</span></span>
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<span>(</span><span>debugOut=None, noProto=False, connectNow=True)</span>
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</code></dt>
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<dd>
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<div class="desc"><p>Interface class for meshtastic devices over a stream link (serial, TCP, etc)</p>
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<p>Constructor, opens a connection to self.stream</p>
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<p>Keyword Arguments:
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devPath {string} – A filepath to a device, i.e. /dev/ttyUSB0 (default: {None})
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debugOut {stream} – If a stream is provided, any debug serial output from the device will be emitted to that stream. (default: {None})</p>
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<h2 id="raises">Raises</h2>
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<dl>
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<dt><code>Exception</code></dt>
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<dd>[description]</dd>
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<dt><code>Exception</code></dt>
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<dd>[description]</dd>
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</dl></div>
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<details class="source">
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<summary>
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<span>Expand source code</span>
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</summary>
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<pre><code class="python">class StreamInterface(MeshInterface):
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"""Interface class for meshtastic devices over a stream link (serial, TCP, etc)"""
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def __init__(self, debugOut=None, noProto=False, connectNow=True):
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"""Constructor, opens a connection to self.stream
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|
|
Keyword Arguments:
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devPath {string} -- A filepath to a device, i.e. /dev/ttyUSB0 (default: {None})
|
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debugOut {stream} -- If a stream is provided, any debug serial output from the device will be emitted to that stream. (default: {None})
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|
Raises:
|
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Exception: [description]
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Exception: [description]
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"""
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if not hasattr(self, 'stream'):
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raise Exception(
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"StreamInterface is now abstract (to update existing code create SerialInterface instead)")
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self._rxBuf = bytes() # empty
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self._wantExit = False
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|
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# FIXME, figure out why daemon=True causes reader thread to exit too early
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self._rxThread = threading.Thread(
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target=self.__reader, args=(), daemon=True)
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MeshInterface.__init__(self, debugOut=debugOut, noProto=noProto)
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# Start the reader thread after superclass constructor completes init
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if connectNow:
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self.connect()
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if not noProto:
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self.waitForConfig()
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def connect(self):
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"""Connect to our radio
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|
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Normally this is called automatically by the constructor, but if you passed in connectNow=False you can manually
|
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start the reading thread later.
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"""
|
|
|
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# Send some bogus UART characters to force a sleeping device to wake, and if the reading statemachine was parsing a bad packet make sure
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# we write enought start bytes to force it to resync (we don't use START1 because we want to ensure it is looking for START1)
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p = bytearray([START2] * 32)
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self._writeBytes(p)
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time.sleep(0.1) # wait 100ms to give device time to start running
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self._rxThread.start()
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self._startConfig()
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if not self.noProto: # Wait for the db download if using the protocol
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self._waitConnected()
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def _disconnected(self):
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"""We override the superclass implementation to close our port"""
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MeshInterface._disconnected(self)
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logging.debug("Closing our port")
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if not self.stream is None:
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self.stream.close()
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self.stream = None
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def _writeBytes(self, b):
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"""Write an array of bytes to our stream and flush"""
|
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if self.stream: # ignore writes when stream is closed
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self.stream.write(b)
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self.stream.flush()
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def _readBytes(self, length):
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"""Read an array of bytes from our stream"""
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return self.stream.read(length)
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def _sendToRadioImpl(self, toRadio):
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"""Send a ToRadio protobuf to the device"""
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logging.debug(f"Sending: {stripnl(toRadio)}")
|
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b = toRadio.SerializeToString()
|
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bufLen = len(b)
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# We convert into a string, because the TCP code doesn't work with byte arrays
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header = bytes([START1, START2, (bufLen >> 8) & 0xff, bufLen & 0xff])
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self._writeBytes(header + b)
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def close(self):
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"""Close a connection to the device"""
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logging.debug("Closing stream")
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MeshInterface.close(self)
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# pyserial cancel_read doesn't seem to work, therefore we ask the reader thread to close things for us
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self._wantExit = True
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if self._rxThread != threading.current_thread():
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self._rxThread.join() # wait for it to exit
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|
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def __reader(self):
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"""The reader thread that reads bytes from our stream"""
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empty = bytes()
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try:
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while not self._wantExit:
|
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# logging.debug("reading character")
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b = self._readBytes(1)
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# logging.debug("In reader loop")
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# logging.debug(f"read returned {b}")
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if len(b) > 0:
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c = b[0]
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ptr = len(self._rxBuf)
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# Assume we want to append this byte, fixme use bytearray instead
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self._rxBuf = self._rxBuf + b
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|
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if ptr == 0: # looking for START1
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if c != START1:
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self._rxBuf = empty # failed to find start
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if self.debugOut is not None:
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try:
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self.debugOut.write(b.decode("utf-8"))
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except:
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self.debugOut.write('?')
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elif ptr == 1: # looking for START2
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if c != START2:
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self._rxBuf = empty # failed to find start2
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elif ptr >= HEADER_LEN - 1: # we've at least got a header
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# big endian length follos header
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packetlen = (self._rxBuf[2] << 8) + self._rxBuf[3]
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if ptr == HEADER_LEN - 1: # we _just_ finished reading the header, validate length
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if packetlen > MAX_TO_FROM_RADIO_SIZE:
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self._rxBuf = empty # length ws out out bounds, restart
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if len(self._rxBuf) != 0 and ptr + 1 >= packetlen + HEADER_LEN:
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try:
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self._handleFromRadio(self._rxBuf[HEADER_LEN:])
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except Exception as ex:
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logging.error(
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f"Error while handling message from radio {ex}")
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traceback.print_exc()
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self._rxBuf = empty
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else:
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# logging.debug(f"timeout")
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pass
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except serial.SerialException as ex:
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if not self._wantExit: # We might intentionally get an exception during shutdown
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logging.warning(
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f"Meshtastic serial port disconnected, disconnecting... {ex}")
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except OSError as ex:
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if not self._wantExit: # We might intentionally get an exception during shutdown
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logging.error(
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f"Unexpected OSError, terminating meshtastic reader... {ex}")
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except Exception as ex:
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logging.error(
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f"Unexpected exception, terminating meshtastic reader... {ex}")
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finally:
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logging.debug("reader is exiting")
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self._disconnected()</code></pre>
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</details>
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<h3>Ancestors</h3>
|
|
<ul class="hlist">
|
|
<li><a title="meshtastic.mesh_interface.MeshInterface" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface">MeshInterface</a></li>
|
|
</ul>
|
|
<h3>Subclasses</h3>
|
|
<ul class="hlist">
|
|
<li><a title="meshtastic.serial_interface.SerialInterface" href="serial_interface.html#meshtastic.serial_interface.SerialInterface">SerialInterface</a></li>
|
|
<li><a title="meshtastic.tcp_interface.TCPInterface" href="tcp_interface.html#meshtastic.tcp_interface.TCPInterface">TCPInterface</a></li>
|
|
</ul>
|
|
<h3>Methods</h3>
|
|
<dl>
|
|
<dt id="meshtastic.stream_interface.StreamInterface.close"><code class="name flex">
|
|
<span>def <span class="ident">close</span></span>(<span>self)</span>
|
|
</code></dt>
|
|
<dd>
|
|
<div class="desc"><p>Close a connection to the device</p></div>
|
|
<details class="source">
|
|
<summary>
|
|
<span>Expand source code</span>
|
|
</summary>
|
|
<pre><code class="python">def close(self):
|
|
"""Close a connection to the device"""
|
|
logging.debug("Closing stream")
|
|
MeshInterface.close(self)
|
|
# pyserial cancel_read doesn't seem to work, therefore we ask the reader thread to close things for us
|
|
self._wantExit = True
|
|
if self._rxThread != threading.current_thread():
|
|
self._rxThread.join() # wait for it to exit</code></pre>
|
|
</details>
|
|
</dd>
|
|
<dt id="meshtastic.stream_interface.StreamInterface.connect"><code class="name flex">
|
|
<span>def <span class="ident">connect</span></span>(<span>self)</span>
|
|
</code></dt>
|
|
<dd>
|
|
<div class="desc"><p>Connect to our radio</p>
|
|
<p>Normally this is called automatically by the constructor, but if you passed in connectNow=False you can manually
|
|
start the reading thread later.</p></div>
|
|
<details class="source">
|
|
<summary>
|
|
<span>Expand source code</span>
|
|
</summary>
|
|
<pre><code class="python">def connect(self):
|
|
"""Connect to our radio
|
|
|
|
Normally this is called automatically by the constructor, but if you passed in connectNow=False you can manually
|
|
start the reading thread later.
|
|
"""
|
|
|
|
# Send some bogus UART characters to force a sleeping device to wake, and if the reading statemachine was parsing a bad packet make sure
|
|
# we write enought start bytes to force it to resync (we don't use START1 because we want to ensure it is looking for START1)
|
|
p = bytearray([START2] * 32)
|
|
self._writeBytes(p)
|
|
time.sleep(0.1) # wait 100ms to give device time to start running
|
|
|
|
self._rxThread.start()
|
|
|
|
self._startConfig()
|
|
|
|
if not self.noProto: # Wait for the db download if using the protocol
|
|
self._waitConnected()</code></pre>
|
|
</details>
|
|
</dd>
|
|
</dl>
|
|
<h3>Inherited members</h3>
|
|
<ul class="hlist">
|
|
<li><code><b><a title="meshtastic.mesh_interface.MeshInterface" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface">MeshInterface</a></b></code>:
|
|
<ul class="hlist">
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.getLongName" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.getLongName">getLongName</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.getMyNodeInfo" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.getMyNodeInfo">getMyNodeInfo</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.getMyUser" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.getMyUser">getMyUser</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.getNode" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.getNode">getNode</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.getShortName" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.getShortName">getShortName</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.sendData" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.sendData">sendData</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.sendPosition" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.sendPosition">sendPosition</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.sendText" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.sendText">sendText</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.showInfo" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.showInfo">showInfo</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.showNodes" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.showNodes">showNodes</a></code></li>
|
|
<li><code><a title="meshtastic.mesh_interface.MeshInterface.waitForConfig" href="mesh_interface.html#meshtastic.mesh_interface.MeshInterface.waitForConfig">waitForConfig</a></code></li>
|
|
</ul>
|
|
</li>
|
|
</ul>
|
|
</dd>
|
|
</dl>
|
|
</section>
|
|
</article>
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<nav id="sidebar">
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<h1>Index</h1>
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<div class="toc">
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<ul></ul>
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</div>
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<ul id="index">
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<li><h3>Super-module</h3>
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<ul>
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<li><code><a title="meshtastic" href="index.html">meshtastic</a></code></li>
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</ul>
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</li>
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<li><h3><a href="#header-classes">Classes</a></h3>
|
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<ul>
|
|
<li>
|
|
<h4><code><a title="meshtastic.stream_interface.StreamInterface" href="#meshtastic.stream_interface.StreamInterface">StreamInterface</a></code></h4>
|
|
<ul class="">
|
|
<li><code><a title="meshtastic.stream_interface.StreamInterface.close" href="#meshtastic.stream_interface.StreamInterface.close">close</a></code></li>
|
|
<li><code><a title="meshtastic.stream_interface.StreamInterface.connect" href="#meshtastic.stream_interface.StreamInterface.connect">connect</a></code></li>
|
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</ul>
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</li>
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