615 lines
23 KiB
Python
615 lines
23 KiB
Python
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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import dbus.service
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import logging
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import traceback
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import os
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import weakref
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from collections import defaultdict
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from ve_utils import wrap_dbus_value, unwrap_dbus_value
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# vedbus contains three classes:
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# VeDbusItemImport -> use this to read data from the dbus, ie import
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# VeDbusItemExport -> use this to export data to the dbus (one value)
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# VeDbusService -> use that to create a service and export several values to the dbus
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# Code for VeDbusItemImport is copied from busitem.py and thereafter modified.
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# All projects that used busitem.py need to migrate to this package. And some
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# projects used to define there own equivalent of VeDbusItemExport. Better to
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# use VeDbusItemExport, or even better the VeDbusService class that does it all for you.
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# TODOS
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# 1 check for datatypes, it works now, but not sure if all is compliant with
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# com.victronenergy.BusItem interface definition. See also the files in
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# tests_and_examples. And see 'if type(v) == dbus.Byte:' on line 102. Perhaps
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# something similar should also be done in VeDbusBusItemExport?
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# 2 Shouldn't VeDbusBusItemExport inherit dbus.service.Object?
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# 7 Make hard rules for services exporting data to the D-Bus, in order to make tracking
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# changes possible. Does everybody first invalidate its data before leaving the bus?
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# And what about before taking one object away from the bus, instead of taking the
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# whole service offline?
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# They should! And after taking one value away, do we need to know that someone left
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# the bus? Or we just keep that value in invalidated for ever? Result is that we can't
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# see the difference anymore between an invalidated value and a value that was first on
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# the bus and later not anymore. See comments above VeDbusItemImport as well.
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# 9 there are probably more todos in the code below.
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# Some thoughts with regards to the data types:
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#
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# Text from: http://dbus.freedesktop.org/doc/dbus-python/doc/tutorial.html#data-types
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# ---
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# Variants are represented by setting the variant_level keyword argument in the
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# constructor of any D-Bus data type to a value greater than 0 (variant_level 1
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# means a variant containing some other data type, variant_level 2 means a variant
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# containing a variant containing some other data type, and so on). If a non-variant
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# is passed as an argument but introspection indicates that a variant is expected,
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# it'll automatically be wrapped in a variant.
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# ---
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#
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# Also the different dbus datatypes, such as dbus.Int32, and dbus.UInt32 are a subclass
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# of Python int. dbus.String is a subclass of Python standard class unicode, etcetera
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#
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# So all together that explains why we don't need to explicitly convert back and forth
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# between the dbus datatypes and the standard python datatypes. Note that all datatypes
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# in python are objects. Even an int is an object.
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# The signature of a variant is 'v'.
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# Export ourselves as a D-Bus service.
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class VeDbusService(object):
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def __init__(self, servicename, bus=None):
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# dict containing the VeDbusItemExport objects, with their path as the key.
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self._dbusobjects = {}
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self._dbusnodes = {}
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self._ratelimiters = []
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self._dbusname = None
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# dict containing the onchange callbacks, for each object. Object path is the key
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self._onchangecallbacks = {}
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# Connect to session bus whenever present, else use the system bus
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self._dbusconn = bus or (dbus.SessionBus() if 'DBUS_SESSION_BUS_ADDRESS' in os.environ else dbus.SystemBus())
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# make the dbus connection available to outside, could make this a true property instead, but ach..
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self.dbusconn = self._dbusconn
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# Register ourselves on the dbus, trigger an error if already in use (do_not_queue)
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self._dbusname = dbus.service.BusName(servicename, self._dbusconn, do_not_queue=True)
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# Add the root item that will return all items as a tree
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self._dbusnodes['/'] = VeDbusRootExport(self._dbusconn, '/', self)
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logging.info("registered ourselves on D-Bus as %s" % servicename)
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# To force immediate deregistering of this dbus service and all its object paths, explicitly
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# call __del__().
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def __del__(self):
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for node in list(self._dbusnodes.values()):
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node.__del__()
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self._dbusnodes.clear()
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for item in list(self._dbusobjects.values()):
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item.__del__()
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self._dbusobjects.clear()
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if self._dbusname:
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self._dbusname.__del__() # Forces call to self._bus.release_name(self._name), see source code
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self._dbusname = None
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def get_name(self):
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return self._dbusname.get_name()
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# @param callbackonchange function that will be called when this value is changed. First parameter will
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# be the path of the object, second the new value. This callback should return
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# True to accept the change, False to reject it.
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def add_path(self, path, value, description="", writeable=False,
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onchangecallback=None, gettextcallback=None, valuetype=None, itemtype=None):
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if onchangecallback is not None:
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self._onchangecallbacks[path] = onchangecallback
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itemtype = itemtype or VeDbusItemExport
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item = itemtype(self._dbusconn, path, value, description, writeable,
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self._value_changed, gettextcallback, deletecallback=self._item_deleted, valuetype=valuetype)
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spl = path.split('/')
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for i in range(2, len(spl)):
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subPath = '/'.join(spl[:i])
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if subPath not in self._dbusnodes and subPath not in self._dbusobjects:
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self._dbusnodes[subPath] = VeDbusTreeExport(self._dbusconn, subPath, self)
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self._dbusobjects[path] = item
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logging.debug('added %s with start value %s. Writeable is %s' % (path, value, writeable))
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# Add the mandatory paths, as per victron dbus api doc
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def add_mandatory_paths(self, processname, processversion, connection,
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deviceinstance, productid, productname, firmwareversion, hardwareversion, connected):
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self.add_path('/Mgmt/ProcessName', processname)
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self.add_path('/Mgmt/ProcessVersion', processversion)
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self.add_path('/Mgmt/Connection', connection)
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# Create rest of the mandatory objects
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self.add_path('/DeviceInstance', deviceinstance)
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self.add_path('/ProductId', productid)
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self.add_path('/ProductName', productname)
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self.add_path('/FirmwareVersion', firmwareversion)
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self.add_path('/HardwareVersion', hardwareversion)
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self.add_path('/Connected', connected)
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# Callback function that is called from the VeDbusItemExport objects when a value changes. This function
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# maps the change-request to the onchangecallback given to us for this specific path.
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def _value_changed(self, path, newvalue):
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if path not in self._onchangecallbacks:
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return True
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return self._onchangecallbacks[path](path, newvalue)
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def _item_deleted(self, path):
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self._dbusobjects.pop(path)
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for np in list(self._dbusnodes.keys()):
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if np != '/':
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for ip in self._dbusobjects:
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if ip.startswith(np + '/'):
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break
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else:
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self._dbusnodes[np].__del__()
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self._dbusnodes.pop(np)
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def __getitem__(self, path):
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return self._dbusobjects[path].local_get_value()
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def __setitem__(self, path, newvalue):
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self._dbusobjects[path].local_set_value(newvalue)
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def __delitem__(self, path):
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self._dbusobjects[path].__del__() # Invalidates and then removes the object path
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assert path not in self._dbusobjects
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def __contains__(self, path):
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return path in self._dbusobjects
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def __enter__(self):
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l = ServiceContext(self)
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self._ratelimiters.append(l)
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return l
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def __exit__(self, *exc):
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# pop off the top one and flush it. If with statements are nested
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# then each exit flushes its own part.
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if self._ratelimiters:
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self._ratelimiters.pop().flush()
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class ServiceContext(object):
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def __init__(self, parent):
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self.parent = parent
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self.changes = {}
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def __getitem__(self, path):
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return self.parent[path]
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def __setitem__(self, path, newvalue):
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c = self.parent._dbusobjects[path]._local_set_value(newvalue)
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if c is not None:
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self.changes[path] = c
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def flush(self):
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if self.changes:
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self.parent._dbusnodes['/'].ItemsChanged(self.changes)
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class TrackerDict(defaultdict):
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""" Same as defaultdict, but passes the key to default_factory. """
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def __missing__(self, key):
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self[key] = x = self.default_factory(key)
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return x
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class VeDbusRootTracker(object):
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""" This tracks the root of a dbus path and listens for PropertiesChanged
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signals. When a signal arrives, parse it and unpack the key/value changes
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into traditional events, then pass it to the original eventCallback
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method. """
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def __init__(self, bus, serviceName):
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self.importers = defaultdict(weakref.WeakSet)
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self.serviceName = serviceName
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self._match = bus.get_object(serviceName, '/', introspect=False).connect_to_signal(
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"ItemsChanged", weak_functor(self._items_changed_handler))
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def __del__(self):
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self._match.remove()
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self._match = None
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def add(self, i):
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self.importers[i.path].add(i)
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def _items_changed_handler(self, items):
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if not isinstance(items, dict):
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return
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for path, changes in items.items():
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try:
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v = changes['Value']
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except KeyError:
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continue
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try:
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t = changes['Text']
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except KeyError:
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t = str(unwrap_dbus_value(v))
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for i in self.importers.get(path, ()):
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i._properties_changed_handler({'Value': v, 'Text': t})
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"""
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Importing basics:
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- If when we power up, the D-Bus service does not exist, or it does exist and the path does not
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yet exist, still subscribe to a signal: as soon as it comes online it will send a signal with its
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initial value, which VeDbusItemImport will receive and use to update local cache. And, when set,
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call the eventCallback.
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- If when we power up, save it
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- When using get_value, know that there is no difference between services (or object paths) that don't
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exist and paths that are invalid (= empty array, see above). Both will return None. In case you do
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really want to know ifa path exists or not, use the exists property.
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- When a D-Bus service leaves the D-Bus, it will first invalidate all its values, and send signals
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with that update, and only then leave the D-Bus. (or do we need to subscribe to the NameOwnerChanged-
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signal!?!) To be discussed and make sure. Not really urgent, since all existing code that uses this
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class already subscribes to the NameOwnerChanged signal, and subsequently removes instances of this
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class.
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Read when using this class:
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Note that when a service leaves that D-Bus without invalidating all its exported objects first, for
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example because it is killed, VeDbusItemImport doesn't have a clue. So when using VeDbusItemImport,
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make sure to also subscribe to the NamerOwnerChanged signal on bus-level. Or just use dbusmonitor,
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because that takes care of all of that for you.
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"""
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class VeDbusItemImport(object):
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def __new__(cls, bus, serviceName, path, eventCallback=None, createsignal=True):
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instance = object.__new__(cls)
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# If signal tracking should be done, also add to root tracker
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if createsignal:
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if "_roots" not in cls.__dict__:
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cls._roots = TrackerDict(lambda k: VeDbusRootTracker(bus, k))
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return instance
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## Constructor
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# @param bus the bus-object (SESSION or SYSTEM).
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# @param serviceName the dbus-service-name (string), for example 'com.victronenergy.battery.ttyO1'
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# @param path the object-path, for example '/Dc/V'
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# @param eventCallback function that you want to be called on a value change
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# @param createSignal only set this to False if you use this function to one time read a value. When
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# leaving it to True, make sure to also subscribe to the NameOwnerChanged signal
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# elsewhere. See also note some 15 lines up.
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def __init__(self, bus, serviceName, path, eventCallback=None, createsignal=True):
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# TODO: is it necessary to store _serviceName and _path? Isn't it
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# stored in the bus_getobjectsomewhere?
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self._serviceName = serviceName
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self._path = path
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self._match = None
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# TODO: _proxy is being used in settingsdevice.py, make a getter for that
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self._proxy = bus.get_object(serviceName, path, introspect=False)
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self.eventCallback = eventCallback
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assert eventCallback is None or createsignal == True
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if createsignal:
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self._match = self._proxy.connect_to_signal(
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"PropertiesChanged", weak_functor(self._properties_changed_handler))
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self._roots[serviceName].add(self)
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# store the current value in _cachedvalue. When it doesn't exists set _cachedvalue to
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# None, same as when a value is invalid
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self._cachedvalue = None
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try:
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v = self._proxy.GetValue()
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except dbus.exceptions.DBusException:
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pass
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else:
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self._cachedvalue = unwrap_dbus_value(v)
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def __del__(self):
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if self._match is not None:
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self._match.remove()
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self._match = None
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self._proxy = None
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def _refreshcachedvalue(self):
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self._cachedvalue = unwrap_dbus_value(self._proxy.GetValue())
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## Returns the path as a string, for example '/AC/L1/V'
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@property
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def path(self):
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return self._path
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## Returns the dbus service name as a string, for example com.victronenergy.vebus.ttyO1
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@property
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def serviceName(self):
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return self._serviceName
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## Returns the value of the dbus-item.
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# the type will be a dbus variant, for example dbus.Int32(0, variant_level=1)
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# this is not a property to keep the name consistant with the com.victronenergy.busitem interface
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# returns None when the property is invalid
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def get_value(self):
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return self._cachedvalue
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## Writes a new value to the dbus-item
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def set_value(self, newvalue):
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r = self._proxy.SetValue(wrap_dbus_value(newvalue))
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# instead of just saving the value, go to the dbus and get it. So we have the right type etc.
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if r == 0:
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self._refreshcachedvalue()
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return r
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## Resets the item to its default value
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def set_default(self):
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self._proxy.SetDefault()
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self._refreshcachedvalue()
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## Returns the text representation of the value.
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# For example when the value is an enum/int GetText might return the string
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# belonging to that enum value. Another example, for a voltage, GetValue
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# would return a float, 12.0Volt, and GetText could return 12 VDC.
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#
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# Note that this depends on how the dbus-producer has implemented this.
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def get_text(self):
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return self._proxy.GetText()
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## Returns true of object path exists, and false if it doesn't
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@property
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def exists(self):
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# TODO: do some real check instead of this crazy thing.
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r = False
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try:
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r = self._proxy.GetValue()
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r = True
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except dbus.exceptions.DBusException:
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pass
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return r
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## callback for the trigger-event.
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# @param eventCallback the event-callback-function.
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@property
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def eventCallback(self):
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return self._eventCallback
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@eventCallback.setter
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def eventCallback(self, eventCallback):
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self._eventCallback = eventCallback
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## Is called when the value of the imported bus-item changes.
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# Stores the new value in our local cache, and calls the eventCallback, if set.
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def _properties_changed_handler(self, changes):
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if "Value" in changes:
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changes['Value'] = unwrap_dbus_value(changes['Value'])
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self._cachedvalue = changes['Value']
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if self._eventCallback:
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# The reason behind this try/except is to prevent errors silently ending up the an error
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# handler in the dbus code.
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try:
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self._eventCallback(self._serviceName, self._path, changes)
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except:
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traceback.print_exc()
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os._exit(1) # sys.exit() is not used, since that also throws an exception
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class VeDbusTreeExport(dbus.service.Object):
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def __init__(self, bus, objectPath, service):
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dbus.service.Object.__init__(self, bus, objectPath)
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self._service = service
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logging.debug("VeDbusTreeExport %s has been created" % objectPath)
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def __del__(self):
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# self._get_path() will raise an exception when retrieved after the call to .remove_from_connection,
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# so we need a copy.
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path = self._get_path()
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if path is None:
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return
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self.remove_from_connection()
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logging.debug("VeDbusTreeExport %s has been removed" % path)
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def _get_path(self):
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if len(self._locations) == 0:
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return None
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return self._locations[0][1]
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def _get_value_handler(self, path, get_text=False):
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logging.debug("_get_value_handler called for %s" % path)
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r = {}
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px = path
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if not px.endswith('/'):
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px += '/'
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for p, item in self._service._dbusobjects.items():
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if p.startswith(px):
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v = item.GetText() if get_text else wrap_dbus_value(item.local_get_value())
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r[p[len(px):]] = v
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logging.debug(r)
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return r
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@dbus.service.method('com.victronenergy.BusItem', out_signature='v')
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def GetValue(self):
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value = self._get_value_handler(self._get_path())
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return dbus.Dictionary(value, signature=dbus.Signature('sv'), variant_level=1)
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@dbus.service.method('com.victronenergy.BusItem', out_signature='v')
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def GetText(self):
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return self._get_value_handler(self._get_path(), True)
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def local_get_value(self):
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return self._get_value_handler(self.path)
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class VeDbusRootExport(VeDbusTreeExport):
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@dbus.service.signal('com.victronenergy.BusItem', signature='a{sa{sv}}')
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def ItemsChanged(self, changes):
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pass
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@dbus.service.method('com.victronenergy.BusItem', out_signature='a{sa{sv}}')
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def GetItems(self):
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return {
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path: {
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'Value': wrap_dbus_value(item.local_get_value()),
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'Text': item.GetText() }
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for path, item in self._service._dbusobjects.items()
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}
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class VeDbusItemExport(dbus.service.Object):
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## Constructor of VeDbusItemExport
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#
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# Use this object to export (publish), values on the dbus
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# Creates the dbus-object under the given dbus-service-name.
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# @param bus The dbus object.
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# @param objectPath The dbus-object-path.
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# @param value Value to initialize ourselves with, defaults to None which means Invalid
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# @param description String containing a description. Can be called over the dbus with GetDescription()
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# @param writeable what would this do!? :).
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# @param callback Function that will be called when someone else changes the value of this VeBusItem
|
|
# over the dbus. First parameter passed to callback will be our path, second the new
|
|
# value. This callback should return True to accept the change, False to reject it.
|
|
def __init__(self, bus, objectPath, value=None, description=None, writeable=False,
|
|
onchangecallback=None, gettextcallback=None, deletecallback=None,
|
|
valuetype=None):
|
|
dbus.service.Object.__init__(self, bus, objectPath)
|
|
self._onchangecallback = onchangecallback
|
|
self._gettextcallback = gettextcallback
|
|
self._value = value
|
|
self._description = description
|
|
self._writeable = writeable
|
|
self._deletecallback = deletecallback
|
|
self._type = valuetype
|
|
|
|
# To force immediate deregistering of this dbus object, explicitly call __del__().
|
|
def __del__(self):
|
|
# self._get_path() will raise an exception when retrieved after the
|
|
# call to .remove_from_connection, so we need a copy.
|
|
path = self._get_path()
|
|
if path == None:
|
|
return
|
|
if self._deletecallback is not None:
|
|
self._deletecallback(path)
|
|
self.remove_from_connection()
|
|
logging.debug("VeDbusItemExport %s has been removed" % path)
|
|
|
|
def _get_path(self):
|
|
if len(self._locations) == 0:
|
|
return None
|
|
return self._locations[0][1]
|
|
|
|
## Sets the value. And in case the value is different from what it was, a signal
|
|
# will be emitted to the dbus. This function is to be used in the python code that
|
|
# is using this class to export values to the dbus.
|
|
# set value to None to indicate that it is Invalid
|
|
def local_set_value(self, newvalue):
|
|
changes = self._local_set_value(newvalue)
|
|
if changes is not None:
|
|
self.PropertiesChanged(changes)
|
|
|
|
def _local_set_value(self, newvalue):
|
|
if self._value == newvalue:
|
|
return None
|
|
|
|
self._value = newvalue
|
|
return {
|
|
'Value': wrap_dbus_value(newvalue),
|
|
'Text': self.GetText()
|
|
}
|
|
|
|
def local_get_value(self):
|
|
return self._value
|
|
|
|
# ==== ALL FUNCTIONS BELOW THIS LINE WILL BE CALLED BY OTHER PROCESSES OVER THE DBUS ====
|
|
|
|
## Dbus exported method SetValue
|
|
# Function is called over the D-Bus by other process. It will first check (via callback) if new
|
|
# value is accepted. And it is, stores it and emits a changed-signal.
|
|
# @param value The new value.
|
|
# @return completion-code When successful a 0 is return, and when not a -1 is returned.
|
|
@dbus.service.method('com.victronenergy.BusItem', in_signature='v', out_signature='i')
|
|
def SetValue(self, newvalue):
|
|
if not self._writeable:
|
|
return 1 # NOT OK
|
|
|
|
newvalue = unwrap_dbus_value(newvalue)
|
|
|
|
# If value type is enforced, cast it. If the type can be coerced
|
|
# python will do it for us. This allows ints to become floats,
|
|
# or bools to become ints. Additionally also allow None, so that
|
|
# a path may be invalidated.
|
|
if self._type is not None and newvalue is not None:
|
|
try:
|
|
newvalue = self._type(newvalue)
|
|
except (ValueError, TypeError):
|
|
return 1 # NOT OK
|
|
|
|
if newvalue == self._value:
|
|
return 0 # OK
|
|
|
|
# call the callback given to us, and check if new value is OK.
|
|
if (self._onchangecallback is None or
|
|
(self._onchangecallback is not None and self._onchangecallback(self.__dbus_object_path__, newvalue))):
|
|
|
|
self.local_set_value(newvalue)
|
|
return 0 # OK
|
|
|
|
return 2 # NOT OK
|
|
|
|
## Dbus exported method GetDescription
|
|
#
|
|
# Returns the a description.
|
|
# @param language A language code (e.g. ISO 639-1 en-US).
|
|
# @param length Lenght of the language string.
|
|
# @return description
|
|
@dbus.service.method('com.victronenergy.BusItem', in_signature='si', out_signature='s')
|
|
def GetDescription(self, language, length):
|
|
return self._description if self._description is not None else 'No description given'
|
|
|
|
## Dbus exported method GetValue
|
|
# Returns the value.
|
|
# @return the value when valid, and otherwise an empty array
|
|
@dbus.service.method('com.victronenergy.BusItem', out_signature='v')
|
|
def GetValue(self):
|
|
return wrap_dbus_value(self._value)
|
|
|
|
## Dbus exported method GetText
|
|
# Returns the value as string of the dbus-object-path.
|
|
# @return text A text-value. '---' when local value is invalid
|
|
@dbus.service.method('com.victronenergy.BusItem', out_signature='s')
|
|
def GetText(self):
|
|
if self._value is None:
|
|
return '---'
|
|
|
|
# Default conversion from dbus.Byte will get you a character (so 'T' instead of '84'), so we
|
|
# have to convert to int first. Note that if a dbus.Byte turns up here, it must have come from
|
|
# the application itself, as all data from the D-Bus should have been unwrapped by now.
|
|
if self._gettextcallback is None and type(self._value) == dbus.Byte:
|
|
return str(int(self._value))
|
|
|
|
if self._gettextcallback is None and self.__dbus_object_path__ == '/ProductId':
|
|
return "0x%X" % self._value
|
|
|
|
if self._gettextcallback is None:
|
|
return str(self._value)
|
|
|
|
return self._gettextcallback(self.__dbus_object_path__, self._value)
|
|
|
|
## The signal that indicates that the value has changed.
|
|
# Other processes connected to this BusItem object will have subscribed to the
|
|
# event when they want to track our state.
|
|
@dbus.service.signal('com.victronenergy.BusItem', signature='a{sv}')
|
|
def PropertiesChanged(self, changes):
|
|
pass
|
|
|
|
## This class behaves like a regular reference to a class method (eg. self.foo), but keeps a weak reference
|
|
## to the object which method is to be called.
|
|
## Use this object to break circular references.
|
|
class weak_functor:
|
|
def __init__(self, f):
|
|
self._r = weakref.ref(f.__self__)
|
|
self._f = weakref.ref(f.__func__)
|
|
|
|
def __call__(self, *args, **kargs):
|
|
r = self._r()
|
|
f = self._f()
|
|
if r == None or f == None:
|
|
return
|
|
f(r, *args, **kargs)
|