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pressure_servo.py
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pressure_servo.py
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# Copyright []
#
# This program is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 2 of the License, or
# (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program. If not, see <http://www.gnu.org/licenses/>.
"""
### BEGIN NODE INFO
[info]
name = Pressure Servo
version = 1.0
description =
[startup]
cmdline = %PYTHON% %FILE%
timeout = 20
[shutdown]
message = 987654321
timeout = 20
### END NODE INFO
"""
import platform
global serial_server_name
serial_server_name = platform.node() + '_serial_server'
from labrad.server import setting
from labrad.devices import DeviceServer,DeviceWrapper
from twisted.internet.defer import inlineCallbacks, returnValue
import labrad.units as units
from labrad.types import Value
TIMEOUT = Value(5,'s')
BAUD = 115200
class PressureServoWrapper(DeviceWrapper):
@inlineCallbacks
def connect(self, server, port):
"""Connect to a device."""
print 'connecting to "%s" on port "%s"...' % (server.name, port),
self.server = server
self.ctx = server.context()
self.port = port
p = self.packet()
p.open(port)
print 'opened on port "%s"' %self.port
p.baudrate(BAUD)
p.read() # clear out the read buffer
p.timeout(TIMEOUT)
print(" CONNECTED ")
yield p.send()
def packet(self):
"""Create a packet in our private context."""
return self.server.packet(context=self.ctx)
def shutdown(self):
"""Disconnect from the serial port when we shut down."""
return self.packet().close().send()
@inlineCallbacks
def write(self, code):
"""Write a data value to the heat switch."""
yield self.packet().write(code).send()
@inlineCallbacks
def read(self):
p=self.packet()
p.read_line()
ans=yield p.send()
returnValue(ans.read_line)
@inlineCallbacks
def query(self, code):
""" Write, then read. """
p = self.packet()
p.write_line(code)
p.read_line()
ans = yield p.send()
returnValue(ans.read_line)
class PressureServoServer(DeviceServer):
name = 'Pressure Servo'
deviceName = 'Pressure Servo'
deviceWrapper = PressureServoWrapper
@inlineCallbacks
def initServer(self):
print 'loading config info...',
self.reg = self.client.registry()
yield self.loadConfigInfo()
print 'done.'
print self.serialLinks
yield DeviceServer.initServer(self)
@inlineCallbacks
def loadConfigInfo(self):
"""Load configuration information from the registry."""
# reg = self.client.registry
# p = reg.packet()
# p.cd(['', 'Servers', 'Heat Switch'], True)
# p.get('Serial Links', '*(ss)', key='links')
# ans = yield p.send()
# self.serialLinks = ans['links']
reg = self.reg
yield reg.cd(['', 'Servers', 'Pressure Servo', 'Links'], True)
dirs, keys = yield reg.dir()
p = reg.packet()
print " created packet"
print "printing all the keys",keys
for k in keys:
print "k=",k
p.get(k, key=k)
ans = yield p.send()
print "ans=",ans
self.serialLinks = dict((k, ans[k]) for k in keys)
@inlineCallbacks
def findDevices(self):
"""Find available devices from list stored in the registry."""
devs = []
# for name, port in self.serialLinks:
# if name not in self.client.servers:
# continue
# server = self.client[name]
# ports = yield server.list_serial_ports()
# if port not in ports:
# continue
# devName = '%s - %s' % (name, port)
# devs += [(devName, (server, port))]
# returnValue(devs)
for name, (serServer, port) in self.serialLinks.items():
if serServer not in self.client.servers:
continue
server = self.client[serServer]
print server
print port
ports = yield server.list_serial_ports()
print ports
if port not in ports:
continue
devName = '%s - %s' % (serServer, port)
devs += [(devName, (server, port))]
# devs += [(0,(3,4))]
returnValue(devs)
@setting(100)
def connect(self,c,server,port):
dev=self.selectedDevice(c)
yield dev.connect(server,port)
@setting(101, pressure='v')
def update(self,c,pressure):
dev=self.selectedDevice(c)
yield dev.write("UPDATE,%i\r"%pressure)
@setting(102, pressure='v')
def set_target(self,c,pressure):
dev=self.selectedDevice(c)
yield dev.write("SET_TARGET,%f\r"%pressure)
@setting(103, direction='i', steps='i')
def rotate(self,c,direction,steps):
dev=self.selectedDevice(c)
yield dev.write("ROTATE,%i,%i\r"%(direction,steps))
@setting(9001,v='v')
def do_nothing(self,c,v):
pass
@setting(9002)
def read(self,c):
dev=self.selectedDevice(c)
ret=yield dev.read()
returnValue(ret)
@setting(9003)
def write(self,c,phrase):
dev=self.selectedDevice(c)
yield dev.write(phrase)
@setting(9004)
def query(self,c,phrase):
dev=self.selectedDevice(c)
yield dev.write(phrase)
ret = yield dev.read()
returnValue(ret)
__server__ = PressureServoServer()
if __name__ == '__main__':
from labrad import util
util.runServer(__server__)