forked from M-Labs/artiq
pc_rpc: multiple target support
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9cd89a0c50
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d2a5dfa1ec
@ -30,7 +30,7 @@ class RemoteError(Exception):
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class IncompatibleServer(Exception):
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"""Raised by the client when attempting to connect to a server that does
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not have the expected type.
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not have the expected target.
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"""
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pass
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@ -62,22 +62,38 @@ class Client:
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hostname or a IPv4 or IPv6 address (see
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``socket.create_connection`` in the Python standard library).
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:param port: TCP port to use.
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:param expected_id_type: Server type to expect. ``IncompatibleServer`` is
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raised when the types do not match. Use ``None`` to accept any server
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type.
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:param target_name: Target name to select. ``IncompatibleServer`` is
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raised if the target does not exist.
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Use ``None`` to skip selecting a target. The list of targets can then
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be retrieved using ``get_rpc_id`` and then one can be selected later
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using ``select_rpc_target``.
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"""
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def __init__(self, host, port, expected_id_type):
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self.socket = socket.create_connection((host, port))
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self.socket.sendall(_init_string)
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self._identify(expected_id_type)
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def __init__(self, host, port, target_name):
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self._socket = socket.create_connection((host, port))
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self._socket.sendall(_init_string)
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def get_rpc_id(self):
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"""Returns a dictionary containing the identification information of
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the server.
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server_identification = self._recv()
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self._target_names = server_identification["targets"]
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self._id_parameters = server_identification["parameters"]
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if target_name is not None:
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self.select_rpc_target(target_name)
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def select_rpc_target(self, target_name):
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"""Selects a RPC target by name. This function should be called
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exactly once if the object was created with ``target_name=None``.
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"""
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return self._server_identification
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if target_name not in self._target_names:
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raise IncompatibleServer
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self._socket.sendall((target_name + "\n").encode())
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def get_rpc_id(self):
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"""Returns a tuple (target_names, id_parameters) containing the
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identification information of the server.
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"""
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return (self._target_names, self._id_parameters)
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def close_rpc(self):
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"""Closes the connection to the RPC server.
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@ -85,15 +101,16 @@ class Client:
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No further method calls should be done after this method is called.
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"""
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self.socket.close()
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self._socket.close()
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def _send_recv(self, obj):
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def _send(self, obj):
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line = pyon.encode(obj) + "\n"
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self.socket.sendall(line.encode())
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self._socket.sendall(line.encode())
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buf = self.socket.recv(4096).decode()
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def _recv(self):
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buf = self._socket.recv(4096).decode()
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while "\n" not in buf:
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more = self.socket.recv(4096)
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more = self._socket.recv(4096)
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if not more:
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break
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buf += more.decode()
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@ -101,20 +118,15 @@ class Client:
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return obj
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def _identify(self, expected_id_type):
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obj = {"action": "identify"}
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self._server_identification = self._send_recv(obj)
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if (expected_id_type is not None
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and self._server_identification["type"] != expected_id_type):
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raise IncompatibleServer
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def _do_rpc(self, name, args, kwargs):
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obj = {"action": "call", "name": name, "args": args, "kwargs": kwargs}
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obj = self._send_recv(obj)
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if obj["result"] == "ok":
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self._send(obj)
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obj = self._recv()
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if obj["status"] == "ok":
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return obj["ret"]
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elif obj["result"] == "error":
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raise RemoteError(obj["message"] + "\n" + obj["traceback"])
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elif obj["status"] == "failed":
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raise RemoteError(obj["message"])
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else:
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raise ValueError
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@ -134,18 +146,16 @@ class Server(AsyncioServer):
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simple cases: it allows new connections to be be accepted even when the
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previous client failed to properly shut down its connection.
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:param target: Object providing the RPC methods to be exposed to the
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client.
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:param id_type: A string identifying the server type. Clients use it to
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verify that they are connected to the proper server.
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:param targets: A dictionary of objects providing the RPC methods to be
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exposed to the client. Keys are names identifying each object.
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Clients select one of these objects using its name upon connection.
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:param id_parameters: An optional human-readable string giving more
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information about the parameters of the server.
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"""
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def __init__(self, target, id_type, id_parameters=None):
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def __init__(self, targets, id_parameters=None):
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AsyncioServer.__init__(self)
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self.target = target
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self.id_type = id_type
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self.targets = targets
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self.id_parameters = id_parameters
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@asyncio.coroutine
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@ -154,34 +164,41 @@ class Server(AsyncioServer):
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line = yield from reader.readline()
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if line != _init_string:
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return
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obj = {
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"targets": sorted(self.targets.keys()),
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"parameters": self.id_parameters
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}
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line = pyon.encode(obj) + "\n"
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writer.write(line.encode())
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line = yield from reader.readline()
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if not line:
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return
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target_name = line.decode()[:-1]
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try:
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target = self.targets[target_name]
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except KeyError:
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return
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while True:
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line = yield from reader.readline()
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if not line:
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break
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obj = pyon.decode(line.decode())
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action = obj["action"]
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if action == "call":
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try:
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method = getattr(self.target, obj["name"])
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ret = method(*obj["args"], **obj["kwargs"])
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obj = {"result": "ok", "ret": ret}
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except Exception as e:
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obj = {"result": "error",
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"message": type(e).__name__ + ": " + str(e),
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"traceback": traceback.format_exc()}
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line = pyon.encode(obj) + "\n"
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writer.write(line.encode())
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elif action == "identify":
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obj = {"type": self.id_type}
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if self.id_parameters is not None:
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obj["parameters"] = self.id_parameters
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line = pyon.encode(obj) + "\n"
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writer.write(line.encode())
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try:
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method = getattr(target, obj["name"])
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ret = method(*obj["args"], **obj["kwargs"])
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obj = {"status": "ok", "ret": ret}
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except Exception:
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obj = {"status": "failed",
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"message": traceback.format_exc()}
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line = pyon.encode(obj) + "\n"
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writer.write(line.encode())
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finally:
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writer.close()
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def simple_server_loop(target, id_type, host, port, id_parameters=None):
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def simple_server_loop(targets, host, port, id_parameters=None):
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"""Runs a server until an exception is raised (e.g. the user hits Ctrl-C).
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See ``Server`` for a description of the parameters.
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@ -189,7 +206,7 @@ def simple_server_loop(target, id_type, host, port, id_parameters=None):
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"""
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loop = asyncio.get_event_loop()
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try:
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server = Server(target, id_type, id_parameters)
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server = Server(targets, id_parameters)
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loop.run_until_complete(server.start(host, port))
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try:
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loop.run_forever()
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@ -66,7 +66,7 @@ def run_server():
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loop = asyncio.get_event_loop()
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try:
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echo = Echo()
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server = pc_rpc.Server(echo, "test")
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server = pc_rpc.Server({"test": echo})
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loop.run_until_complete(server.start(test_address, test_port))
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try:
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loop.run_until_complete(echo.wait_quit())
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@ -30,12 +30,14 @@ Default TCP port list
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When writing a new driver, choose a free TCP port and add it to this list.
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+-----------+--------------+
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| Component | Default port |
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+===========+==============+
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| Master | 8888 |
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+-----------+--------------+
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| PDQ2 | 8889 |
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+-----------+--------------+
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| LDA | 8890 |
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+-----------+--------------+
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+--------------------------+--------------+
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| Component | Default port |
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+==========================+==============+
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| Master (notifications) | 8887 |
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+--------------------------+--------------+
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| Master (control) | 8888 |
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+--------------------------+--------------+
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| PDQ2 | 8889 |
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+--------------------------+--------------+
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| LDA | 8890 |
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+--------------------------+--------------+
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@ -23,7 +23,7 @@ To turn it into a server, we use :class:`artiq.management.pc_rpc`. Import the fu
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and add a ``main`` function that is run when the program is executed: ::
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def main():
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simple_server_loop(Hello(), "hello", "::1", 7777)
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simple_server_loop({"hello": Hello()}, "::1", 7777)
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if __name__ == "__main__":
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main()
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@ -49,10 +49,10 @@ and verify that you can connect to the TCP port: ::
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:tip: Use the key combination Ctrl-AltGr-9 to get the ``telnet>`` prompt, and enter ``close`` to quit Telnet. Quit the controller with Ctrl-C.
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Also verify that you can get the type of the server (the "hello" string passed to ``simple_server_loop``) using the ``artiq_ctlid.py`` program from the ARTIQ front-end tools: ::
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Also verify that a target (service) named "hello" (as passed in the first argument to ``simple_server_loop``) exists using the ``artiq_ctlid.py`` program from the ARTIQ front-end tools: ::
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$ artiq_ctlid.py ::1 7777
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Type: hello
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Target(s): hello
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The client
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----------
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_run_subscriber(args.server, args.port, subscriber)
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else:
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port = 8888 if args.port is None else args.port
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remote = Client(args.server, port, "schedule_control")
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remote = Client(args.server, port, "master_schedule")
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try:
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globals()["_action_" + args.action](remote, args)
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finally:
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args = _get_args()
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remote = Client(args.server, args.port, None)
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try:
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ident = remote.get_rpc_id()
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target_names, id_parameters = remote.get_rpc_id()
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finally:
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remote.close_rpc()
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print("Type: " + ident["type"])
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if "parameters" in ident:
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print("Parameters: " + ident["parameters"])
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print("Target(s): " + ", ".join(target_names))
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if id_parameters is not None:
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print("Parameters: " + id_parameters)
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if __name__ == "__main__":
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main()
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@ -16,11 +16,11 @@ def _get_args():
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"-s", "--server", default="::1",
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help="hostname or IP of the master to connect to")
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parser.add_argument(
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"--port-schedule-control", default=8888, type=int,
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help="TCP port to connect to for schedule control")
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"--port-notify", default=8887, type=int,
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help="TCP port to connect to for notifications")
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parser.add_argument(
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"--port-schedule-notify", default=8887, type=int,
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help="TCP port to connect to for schedule notifications")
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"--port-control", default=8888, type=int,
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help="TCP port to connect to for control")
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return parser.parse_args()
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@ -39,7 +39,7 @@ def main():
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parameters_win.show_all()
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loop.run_until_complete(scheduler_win.sub_connect(
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args.server, args.port_schedule_notify))
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args.server, args.port_notify))
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try:
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loop.run_forever()
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finally:
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@ -16,11 +16,11 @@ def _get_args():
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"--bind", default="::1",
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help="hostname or IP address to bind to")
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parser.add_argument(
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"--port-schedule-control", default=8888, type=int,
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help="TCP port to listen to for schedule control")
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"--port-notify", default=8887, type=int,
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help="TCP port to listen to for notifications")
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parser.add_argument(
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"--port-schedule-notify", default=8887, type=int,
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help="TCP port to listen to for schedule notifications")
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"--port-control", default=8888, type=int,
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help="TCP port to listen to for control")
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return parser.parse_args()
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@ -38,18 +38,20 @@ def main():
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loop.run_until_complete(scheduler.start())
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atexit.register(lambda: loop.run_until_complete(scheduler.stop()))
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schedule_control = Server(scheduler, "schedule_control")
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loop.run_until_complete(schedule_control.start(
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args.bind, args.port_schedule_control))
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atexit.register(lambda: loop.run_until_complete(schedule_control.stop()))
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server_control = Server({
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"master_schedule": scheduler
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})
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loop.run_until_complete(server_control.start(
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args.bind, args.port_control))
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atexit.register(lambda: loop.run_until_complete(server_control.stop()))
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schedule_notify = Publisher({
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server_notify = Publisher({
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"queue": scheduler.queue,
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"periodic": scheduler.periodic
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})
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loop.run_until_complete(schedule_notify.start(
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args.bind, args.port_schedule_notify))
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atexit.register(lambda: loop.run_until_complete(schedule_notify.stop()))
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loop.run_until_complete(server_notify.start(
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args.bind, args.port_notify))
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atexit.register(lambda: loop.run_until_complete(server_notify.stop()))
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loop.run_forever()
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else:
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lda = Lda(args.serial, args.device)
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simple_server_loop(lda, "lda",
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simple_server_loop({"lda": lda},
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args.bind, args.port)
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if __name__ == "__main__":
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dev = Pdq2(serial=args.serial)
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try:
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simple_server_loop(dev, "pdq2", args.bind, args.port,
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id_parameters="serial="+str(args.serial))
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simple_server_loop({"pdq2": dev}, args.bind, args.port,
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id_parameters="serial=" + str(args.serial))
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finally:
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dev.close()
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