mirror of https://github.com/python/cpython
230 lines
7.6 KiB
Python
230 lines
7.6 KiB
Python
__all__ = 'create_subprocess_exec', 'create_subprocess_shell'
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import subprocess
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from . import events
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from . import protocols
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from . import streams
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from . import tasks
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from .log import logger
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PIPE = subprocess.PIPE
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STDOUT = subprocess.STDOUT
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DEVNULL = subprocess.DEVNULL
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class SubprocessStreamProtocol(streams.FlowControlMixin,
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protocols.SubprocessProtocol):
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"""Like StreamReaderProtocol, but for a subprocess."""
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def __init__(self, limit, loop):
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super().__init__(loop=loop)
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self._limit = limit
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self.stdin = self.stdout = self.stderr = None
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self._transport = None
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self._process_exited = False
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self._pipe_fds = []
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self._stdin_closed = self._loop.create_future()
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def __repr__(self):
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info = [self.__class__.__name__]
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if self.stdin is not None:
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info.append(f'stdin={self.stdin!r}')
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if self.stdout is not None:
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info.append(f'stdout={self.stdout!r}')
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if self.stderr is not None:
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info.append(f'stderr={self.stderr!r}')
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return '<{}>'.format(' '.join(info))
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def connection_made(self, transport):
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self._transport = transport
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stdout_transport = transport.get_pipe_transport(1)
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if stdout_transport is not None:
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self.stdout = streams.StreamReader(limit=self._limit,
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loop=self._loop)
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self.stdout.set_transport(stdout_transport)
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self._pipe_fds.append(1)
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stderr_transport = transport.get_pipe_transport(2)
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if stderr_transport is not None:
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self.stderr = streams.StreamReader(limit=self._limit,
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loop=self._loop)
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self.stderr.set_transport(stderr_transport)
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self._pipe_fds.append(2)
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stdin_transport = transport.get_pipe_transport(0)
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if stdin_transport is not None:
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self.stdin = streams.StreamWriter(stdin_transport,
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protocol=self,
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reader=None,
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loop=self._loop)
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def pipe_data_received(self, fd, data):
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if fd == 1:
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reader = self.stdout
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elif fd == 2:
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reader = self.stderr
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else:
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reader = None
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if reader is not None:
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reader.feed_data(data)
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def pipe_connection_lost(self, fd, exc):
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if fd == 0:
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pipe = self.stdin
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if pipe is not None:
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pipe.close()
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self.connection_lost(exc)
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if exc is None:
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self._stdin_closed.set_result(None)
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else:
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self._stdin_closed.set_exception(exc)
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# Since calling `wait_closed()` is not mandatory,
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# we shouldn't log the traceback if this is not awaited.
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self._stdin_closed._log_traceback = False
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return
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if fd == 1:
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reader = self.stdout
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elif fd == 2:
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reader = self.stderr
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else:
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reader = None
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if reader is not None:
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if exc is None:
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reader.feed_eof()
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else:
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reader.set_exception(exc)
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if fd in self._pipe_fds:
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self._pipe_fds.remove(fd)
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self._maybe_close_transport()
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def process_exited(self):
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self._process_exited = True
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self._maybe_close_transport()
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def _maybe_close_transport(self):
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if len(self._pipe_fds) == 0 and self._process_exited:
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self._transport.close()
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self._transport = None
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def _get_close_waiter(self, stream):
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if stream is self.stdin:
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return self._stdin_closed
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class Process:
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def __init__(self, transport, protocol, loop):
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self._transport = transport
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self._protocol = protocol
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self._loop = loop
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self.stdin = protocol.stdin
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self.stdout = protocol.stdout
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self.stderr = protocol.stderr
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self.pid = transport.get_pid()
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def __repr__(self):
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return f'<{self.__class__.__name__} {self.pid}>'
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@property
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def returncode(self):
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return self._transport.get_returncode()
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async def wait(self):
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"""Wait until the process exit and return the process return code."""
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return await self._transport._wait()
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def send_signal(self, signal):
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self._transport.send_signal(signal)
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def terminate(self):
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self._transport.terminate()
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def kill(self):
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self._transport.kill()
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async def _feed_stdin(self, input):
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debug = self._loop.get_debug()
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try:
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if input is not None:
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self.stdin.write(input)
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if debug:
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logger.debug(
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'%r communicate: feed stdin (%s bytes)', self, len(input))
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await self.stdin.drain()
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except (BrokenPipeError, ConnectionResetError) as exc:
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# communicate() ignores BrokenPipeError and ConnectionResetError.
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# write() and drain() can raise these exceptions.
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if debug:
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logger.debug('%r communicate: stdin got %r', self, exc)
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if debug:
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logger.debug('%r communicate: close stdin', self)
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self.stdin.close()
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async def _noop(self):
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return None
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async def _read_stream(self, fd):
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transport = self._transport.get_pipe_transport(fd)
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if fd == 2:
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stream = self.stderr
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else:
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assert fd == 1
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stream = self.stdout
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if self._loop.get_debug():
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name = 'stdout' if fd == 1 else 'stderr'
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logger.debug('%r communicate: read %s', self, name)
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output = await stream.read()
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if self._loop.get_debug():
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name = 'stdout' if fd == 1 else 'stderr'
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logger.debug('%r communicate: close %s', self, name)
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transport.close()
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return output
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async def communicate(self, input=None):
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if self.stdin is not None:
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stdin = self._feed_stdin(input)
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else:
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stdin = self._noop()
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if self.stdout is not None:
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stdout = self._read_stream(1)
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else:
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stdout = self._noop()
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if self.stderr is not None:
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stderr = self._read_stream(2)
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else:
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stderr = self._noop()
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stdin, stdout, stderr = await tasks.gather(stdin, stdout, stderr)
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await self.wait()
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return (stdout, stderr)
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async def create_subprocess_shell(cmd, stdin=None, stdout=None, stderr=None,
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limit=streams._DEFAULT_LIMIT, **kwds):
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loop = events.get_running_loop()
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protocol_factory = lambda: SubprocessStreamProtocol(limit=limit,
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loop=loop)
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transport, protocol = await loop.subprocess_shell(
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protocol_factory,
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cmd, stdin=stdin, stdout=stdout,
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stderr=stderr, **kwds)
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return Process(transport, protocol, loop)
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async def create_subprocess_exec(program, *args, stdin=None, stdout=None,
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stderr=None, limit=streams._DEFAULT_LIMIT,
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**kwds):
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loop = events.get_running_loop()
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protocol_factory = lambda: SubprocessStreamProtocol(limit=limit,
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loop=loop)
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transport, protocol = await loop.subprocess_exec(
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protocol_factory,
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program, *args,
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stdin=stdin, stdout=stdout,
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stderr=stderr, **kwds)
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return Process(transport, protocol, loop)
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