mirror of https://github.com/m-labs/artiq.git
master/client: queue pubsub
This commit is contained in:
parent
f033810e04
commit
1fdad21f08
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@ -17,7 +17,7 @@ import asyncio
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import traceback
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from artiq.management import pyon
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from artiq.management.network import AsyncioServer
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from artiq.management.tools import AsyncioServer
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class RemoteError(Exception):
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@ -1,6 +1,7 @@
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import asyncio
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from time import time
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from artiq.management.sync_struct import Notifier
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from artiq.management.worker import Worker
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@ -8,8 +9,7 @@ class Scheduler:
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def __init__(self, *args, **kwargs):
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self.worker = Worker(*args, **kwargs)
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self.next_rid = 0
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self.currently_executing = None
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self.queued = []
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self.queued = Notifier([])
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self.queue_count = asyncio.Semaphore(0)
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self.periodic = dict()
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self.periodic_modified = asyncio.Event()
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@ -47,14 +47,6 @@ class Scheduler:
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if qrid == rid)
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del self.queued[idx]
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def get_schedule(self):
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if self.currently_executing is None:
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ce = None
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else:
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rid, run_params, timeout, t = self.currently_executing
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ce = rid, run_params, timeout, time() - t
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return ce, self.queued, self.periodic
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def run_periodic(self, run_params, timeout, period):
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prid = self.new_prid()
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self.periodic[prid] = 0, run_params, timeout, period
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@ -64,13 +56,6 @@ class Scheduler:
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def cancel_periodic(self, prid):
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del self.periodic[prid]
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@asyncio.coroutine
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def _run(self, rid, run_params, timeout):
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self.currently_executing = rid, run_params, timeout, time()
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result = yield from self.worker.run(run_params, timeout)
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self.currently_executing = None
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return result
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@asyncio.coroutine
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def _run_periodic(self):
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while True:
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@ -93,8 +78,10 @@ class Scheduler:
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self.periodic[min_prid] = now + period, run_params, timeout, period
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rid = self.new_rid()
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result = yield from self._run(rid, run_params, timeout)
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self.queued.insert(0, (rid, run_params, timeout))
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result = yield from self.worker.run(run_params, timeout)
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print(prid, rid, result)
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del self.queued[0]
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@asyncio.coroutine
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def _schedule(self):
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@ -111,6 +98,7 @@ class Scheduler:
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yield from self._run_periodic()
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if ev_queue in done:
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rid, run_params, timeout = self.queued.pop(0)
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result = yield from self._run(rid, run_params, timeout)
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rid, run_params, timeout = self.queued.backing_struct[0]
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result = yield from self.worker.run(run_params, timeout)
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print(rid, result)
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del self.queued[0]
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@ -1,16 +1,15 @@
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import asyncio
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from artiq.management import pyon
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from artiq.management.network import AsyncioServer
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from artiq.management.tools import AsyncioServer
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_init_string = b"ARTIQ sync_struct\n"
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class Subscriber:
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def __init__(self, target_builder, error_cb, notify_cb=None):
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def __init__(self, target_builder, notify_cb=None):
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self.target_builder = target_builder
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self.error_cb = error_cb
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self.notify_cb = notify_cb
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@asyncio.coroutine
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@ -19,7 +18,7 @@ class Subscriber:
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yield from asyncio.open_connection(host, port)
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try:
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self._writer.write(_init_string)
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self._receive_task = asyncio.Task(self._receive_cr())
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self.receive_task = asyncio.Task(self._receive_cr())
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except:
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self._writer.close()
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del self._reader
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@ -29,9 +28,9 @@ class Subscriber:
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@asyncio.coroutine
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def close(self):
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try:
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self._receive_task.cancel()
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self.receive_task.cancel()
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try:
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yield from asyncio.wait_for(self._receive_task, None)
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yield from asyncio.wait_for(self.receive_task, None)
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except asyncio.CancelledError:
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pass
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finally:
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@ -41,10 +40,11 @@ class Subscriber:
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@asyncio.coroutine
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def _receive_cr(self):
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try:
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target = None
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while True:
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line = yield from self._reader.readline()
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if not line:
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return
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obj = pyon.decode(line.decode())
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action = obj["action"]
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@ -52,23 +52,54 @@ class Subscriber:
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target = self.target_builder(obj["struct"])
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elif action == "append":
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target.append(obj["x"])
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elif action == "insert":
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target.insert(obj["i"], obj["x"])
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elif action == "pop":
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target.pop(obj["i"])
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elif action == "delitem":
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target.__delitem__(obj["key"])
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if self.notify_cb is not None:
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self.notify_cb()
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except:
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self.error_cb()
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raise
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class Notifier:
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def __init__(self, backing_struct):
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self.backing_struct = backing_struct
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self.publisher = None
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# Backing struct modification methods.
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# All modifications must go through them!
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def append(self, x):
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self.backing_struct.append(x)
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if self.publisher is not None:
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self.publisher.publish({"action": "append", "x": x})
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def insert(self, i, x):
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self.backing_struct.insert(i, x)
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if self.publisher is not None:
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self.publisher.publish({"action": "insert", "i": i, "x": x})
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def pop(self, i=-1):
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r = self.backing_struct.pop(i)
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if self.publisher is not None:
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self.publisher.publish({"action": "pop", "i": i})
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return r
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def __delitem__(self, key):
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self.backing_struct.__delitem__(key)
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if self.publisher is not None:
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self.publisher.publish({"action": "delitem", "key": key})
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class Publisher(AsyncioServer):
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def __init__(self, backing_struct):
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def __init__(self, notifier):
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AsyncioServer.__init__(self)
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self.backing_struct = backing_struct
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self.notifier = notifier
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self._recipients = set()
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self.notifier.publisher = self
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@asyncio.coroutine
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def _handle_connection_cr(self, reader, writer):
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try:
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@ -76,7 +107,7 @@ class Publisher(AsyncioServer):
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if line != _init_string:
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return
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obj = {"action": "init", "struct": self.backing_struct}
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obj = {"action": "init", "struct": self.notifier.backing_struct}
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line = pyon.encode(obj) + "\n"
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writer.write(line.encode())
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@ -96,24 +127,8 @@ class Publisher(AsyncioServer):
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finally:
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writer.close()
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def _publish(self, obj):
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def publish(self, obj):
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line = pyon.encode(obj) + "\n"
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line = line.encode()
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for recipient in self._recipients:
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recipient.put_nowait(line)
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# Backing struct modification methods.
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# All modifications must go through them!
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def append(self, x):
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self.backing_struct.append(x)
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self._publish({"action": "append", "x": x})
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def pop(self, i=-1):
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r = self.backing_struct.pop(i)
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self._publish({"action": "pop", "i": i})
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return r
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def __delitem__(self, key):
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self.backing_struct.__delitem__(key)
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self._publish({"action": "delitem", "key": key})
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@ -1,7 +1,12 @@
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import asyncio
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import sys
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from copy import copy
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def clear_screen():
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sys.stdout.write("\x1b[2J\x1b[H")
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class AsyncioServer:
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"""Generic TCP server based on asyncio.
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@ -2,10 +2,14 @@
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import argparse
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import time
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import sys
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import asyncio
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from prettytable import PrettyTable
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from artiq.management.pc_rpc import Client
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from artiq.management.sync_struct import Subscriber
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from artiq.management.tools import clear_screen
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def _get_args():
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@ -14,7 +18,7 @@ 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", default=8888, type=int,
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"--port", default=None, type=int,
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help="TCP port to use to connect to the master")
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subparsers = parser.add_subparsers(dest="action")
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@ -42,8 +46,8 @@ def _get_args():
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parser_cancel.add_argument("rid", type=int,
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help="run identifier (RID/PRID)")
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parser_show = subparsers.add_parser("show",
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help="show the experiment schedule")
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parser_show = subparsers.add_parser("show-queue",
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help="show the experiment queue")
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return parser.parse_args()
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@ -70,30 +74,25 @@ def _action_cancel(remote, args):
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remote.cancel_once(args.rid)
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def _action_show(remote, args):
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ce, queue, periodic = remote.get_schedule()
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if ce is not None or queue:
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def _show_queue(queue):
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clear_screen()
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if queue:
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table = PrettyTable(["RID", "File", "Unit", "Function", "Timeout"])
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if ce is not None:
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rid, run_params, timeout, t = ce
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print("Currently executing RID {} for {:.1f}s".format(rid, t))
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row = [rid, run_params["file"]]
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for x in run_params["unit"], run_params["function"], timeout:
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row.append("-" if x is None else x)
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table.add_row(row)
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for rid, run_params, timeout in queue:
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row = [rid, run_params["file"]]
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for x in run_params["unit"], run_params["function"], timeout:
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row.append("-" if x is None else x)
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table.add_row(row)
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print("Run queue:")
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print(table)
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else:
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print("Queue is empty")
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def _show_periodic(periodic):
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clear_screen()
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if periodic:
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table = PrettyTable(["Next run", "PRID", "File", "Unit", "Function",
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"Timeout", "Period"])
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print("Periodic schedule:")
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sp = sorted(periodic.items(), key=lambda x: x[1][0])
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for prid, (next_run, run_params, timeout, period) in sp:
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row = [time.strftime("%m/%d %H:%M:%S", time.localtime(next_run)),
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@ -107,9 +106,33 @@ def _action_show(remote, args):
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print("No periodic schedule")
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def _run_subscriber(host, port, subscriber):
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loop = asyncio.get_event_loop()
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try:
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loop.run_until_complete(subscriber.connect(host, port))
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try:
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loop.run_until_complete(asyncio.wait_for(subscriber.receive_task,
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None))
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print("Connection to master lost")
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finally:
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loop.run_until_complete(subscriber.close())
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finally:
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loop.close()
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def main():
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args = _get_args()
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remote = Client(args.server, args.port, "master")
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if args.action == "show-queue":
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queue = []
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def init_queue(x):
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queue[:] = x
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return queue
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subscriber = Subscriber(init_queue, lambda: _show_queue(queue))
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port = 8887 if args.port is None else args.port
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_run_subscriber(args.server, 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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try:
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globals()["_action_" + args.action](remote, args)
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finally:
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@ -4,6 +4,7 @@ import asyncio
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import argparse
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from artiq.management.pc_rpc import Server
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from artiq.management.sync_struct import Publisher
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from artiq.management.scheduler import Scheduler
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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", default=8888, type=int,
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help="TCP port to listen to")
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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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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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return parser.parse_args()
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scheduler = Scheduler("ddb.pyon", "pdb.pyon")
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loop.run_until_complete(scheduler.start())
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try:
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server = Server(scheduler, "master")
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loop.run_until_complete(server.start(args.bind, args.port))
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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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try:
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schedule_notify = Publisher(scheduler.queued)
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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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try:
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loop.run_forever()
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finally:
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loop.run_until_complete(server.stop())
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loop.run_until_complete(schedule_notify.stop())
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finally:
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loop.run_until_complete(schedule_control.stop())
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finally:
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loop.run_until_complete(scheduler.stop())
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finally:
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