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Add wrapper for timerfd_create, timerfd_settime, and timerfd_gettime to os module. Co-authored-by: Serhiy Storchaka <storchaka@gmail.com> Co-authored-by: Adam Turner <9087854+AA-Turner@users.noreply.github.com> Co-authored-by: Erlend E. Aasland <erlend.aasland@protonmail.com> Co-authored-by: Victor Stinner <vstinner@python.org>
231 lines
8.5 KiB
ReStructuredText
231 lines
8.5 KiB
ReStructuredText
.. _timerfd-howto:
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*****************************
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timer file descriptor HOWTO
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*****************************
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:Release: 1.13
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This HOWTO discusses Python's support for the linux timer file descriptor.
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Examples
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========
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The following example shows how to use a timer file descriptor
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to execute a function twice a second:
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.. code-block:: python
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# Practical scripts should use really use a non-blocking timer,
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# we use a blocking timer here for simplicity.
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import os, time
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# Create the timer file descriptor
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fd = os.timerfd_create(time.CLOCK_REALTIME)
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# Start the timer in 1 second, with an interval of half a second
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os.timerfd_settime(fd, initial=1, interval=0.5)
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try:
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# Process timer events four times.
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for _ in range(4):
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# read() will block until the timer expires
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_ = os.read(fd, 8)
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print("Timer expired")
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finally:
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# Remember to close the timer file descriptor!
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os.close(fd)
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To avoid the precision loss caused by the :class:`float` type,
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timer file descriptors allow specifying initial expiration and interval
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in integer nanoseconds with ``_ns`` variants of the functions.
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This example shows how :func:`~select.epoll` can be used with timer file
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descriptors to wait until the file descriptor is ready for reading:
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.. code-block:: python
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import os, time, select, socket, sys
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# Create an epoll object
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ep = select.epoll()
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# In this example, use loopback address to send "stop" command to the server.
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#
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# $ telnet 127.0.0.1 1234
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# Trying 127.0.0.1...
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# Connected to 127.0.0.1.
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# Escape character is '^]'.
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# stop
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# Connection closed by foreign host.
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#
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sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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sock.bind(("127.0.0.1", 1234))
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sock.setblocking(False)
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sock.listen(1)
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ep.register(sock, select.EPOLLIN)
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# Create timer file descriptors in non-blocking mode.
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num = 3
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fds = []
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for _ in range(num):
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fd = os.timerfd_create(time.CLOCK_REALTIME, flags=os.TFD_NONBLOCK)
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fds.append(fd)
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# Register the timer file descriptor for read events
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ep.register(fd, select.EPOLLIN)
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# Start the timer with os.timerfd_settime_ns() in nanoseconds.
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# Timer 1 fires every 0.25 seconds; timer 2 every 0.5 seconds; etc
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for i, fd in enumerate(fds, start=1):
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one_sec_in_nsec = 10**9
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i = i * one_sec_in_nsec
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os.timerfd_settime_ns(fd, initial=i//4, interval=i//4)
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timeout = 3
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try:
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conn = None
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is_active = True
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while is_active:
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# Wait for the timer to expire for 3 seconds.
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# epoll.poll() returns a list of (fd, event) pairs.
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# fd is a file descriptor.
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# sock and conn[=returned value of socket.accept()] are socket objects, not file descriptors.
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# So use sock.fileno() and conn.fileno() to get the file descriptors.
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events = ep.poll(timeout)
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# If more than one timer file descriptors are ready for reading at once,
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# epoll.poll() returns a list of (fd, event) pairs.
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#
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# In this example settings,
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# 1st timer fires every 0.25 seconds in 0.25 seconds. (0.25, 0.5, 0.75, 1.0, ...)
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# 2nd timer every 0.5 seconds in 0.5 seconds. (0.5, 1.0, 1.5, 2.0, ...)
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# 3rd timer every 0.75 seconds in 0.75 seconds. (0.75, 1.5, 2.25, 3.0, ...)
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#
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# In 0.25 seconds, only 1st timer fires.
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# In 0.5 seconds, 1st timer and 2nd timer fires at once.
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# In 0.75 seconds, 1st timer and 3rd timer fires at once.
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# In 1.5 seconds, 1st timer, 2nd timer and 3rd timer fires at once.
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#
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# If a timer file descriptor is signaled more than once since
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# the last os.read() call, os.read() returns the nubmer of signaled
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# as host order of class bytes.
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print(f"Signaled events={events}")
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for fd, event in events:
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if event & select.EPOLLIN:
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if fd == sock.fileno():
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# Check if there is a connection request.
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print(f"Accepting connection {fd}")
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conn, addr = sock.accept()
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conn.setblocking(False)
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print(f"Accepted connection {conn} from {addr}")
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ep.register(conn, select.EPOLLIN)
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elif conn and fd == conn.fileno():
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# Check if there is data to read.
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print(f"Reading data {fd}")
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data = conn.recv(1024)
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if data:
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# You should catch UnicodeDecodeError exception for safety.
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cmd = data.decode()
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if cmd.startswith("stop"):
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print(f"Stopping server")
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is_active = False
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else:
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print(f"Unknown command: {cmd}")
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else:
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# No more data, close connection
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print(f"Closing connection {fd}")
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ep.unregister(conn)
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conn.close()
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conn = None
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elif fd in fds:
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print(f"Reading timer {fd}")
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count = int.from_bytes(os.read(fd, 8), byteorder=sys.byteorder)
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print(f"Timer {fds.index(fd) + 1} expired {count} times")
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else:
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print(f"Unknown file descriptor {fd}")
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finally:
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for fd in fds:
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ep.unregister(fd)
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os.close(fd)
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ep.close()
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This example shows how :func:`~select.select` can be used with timer file
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descriptors to wait until the file descriptor is ready for reading:
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.. code-block:: python
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import os, time, select, socket, sys
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# In this example, use loopback address to send "stop" command to the server.
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#
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# $ telnet 127.0.0.1 1234
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# Trying 127.0.0.1...
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# Connected to 127.0.0.1.
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# Escape character is '^]'.
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# stop
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# Connection closed by foreign host.
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#
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sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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sock.bind(("127.0.0.1", 1234))
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sock.setblocking(False)
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sock.listen(1)
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# Create timer file descriptors in non-blocking mode.
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num = 3
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fds = [os.timerfd_create(time.CLOCK_REALTIME, flags=os.TFD_NONBLOCK)
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for _ in range(num)]
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select_fds = fds + [sock]
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# Start the timers with os.timerfd_settime() in seconds.
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# Timer 1 fires every 0.25 seconds; timer 2 every 0.5 seconds; etc
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for i, fd in enumerate(fds, start=1):
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os.timerfd_settime(fd, initial=i/4, interval=i/4)
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timeout = 3
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try:
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conn = None
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is_active = True
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while is_active:
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# Wait for the timer to expire for 3 seconds.
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# select.select() returns a list of file descriptors or objects.
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rfd, wfd, xfd = select.select(select_fds, select_fds, select_fds, timeout)
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for fd in rfd:
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if fd == sock:
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# Check if there is a connection request.
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print(f"Accepting connection {fd}")
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conn, addr = sock.accept()
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conn.setblocking(False)
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print(f"Accepted connection {conn} from {addr}")
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select_fds.append(conn)
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elif conn and fd == conn:
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# Check if there is data to read.
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print(f"Reading data {fd}")
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data = conn.recv(1024)
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if data:
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# You should catch UnicodeDecodeError exception for safety.
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cmd = data.decode()
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if cmd.startswith("stop"):
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print(f"Stopping server")
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is_active = False
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else:
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print(f"Unknown command: {cmd}")
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else:
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# No more data, close connection
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print(f"Closing connection {fd}")
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select_fds.remove(conn)
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conn.close()
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conn = None
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elif fd in fds:
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print(f"Reading timer {fd}")
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count = int.from_bytes(os.read(fd, 8), byteorder=sys.byteorder)
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print(f"Timer {fds.index(fd) + 1} expired {count} times")
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else:
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print(f"Unknown file descriptor {fd}")
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finally:
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for fd in fds:
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os.close(fd)
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sock.close()
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sock = None
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