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"""
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Copyright 2004 Jim Bublitz
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Terms and Conditions
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to
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deal in the Software without restriction, including without limitation the
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rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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sell copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
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WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR
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IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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Except as contained in this notice, the name of the copyright holder shall
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not be used in advertising or otherwise to promote the sale, use or other
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dealings in this Software without prior written authorization from the
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copyright holder.
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"""
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"""
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This is a re-implementation in Python of pcop.cpp written by Torben Weis
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and Julian Rockey, modified for Python and PyKDE.
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To "DCOP-enable" an application, subclass DCOPExObj (be sure to call the
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base class' __init__ method) and use 'addMethod' to identify the methods
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which will be exposed via DCOP along with names of the Python methods that
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implement the exposed methods.
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A DCOP client application when doing DCOPCLient.call (...) will end up
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running the 'process' method which demarshalls the arguments, calls the
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specified Python method with the arg values passed in, and marshalls the
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return value to be returned to the caller.
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DCOPExMeth is basically a data structure to hold the parsed method info
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(name, arg list, return type, signature)
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This module requires the dcopext module, but only for the numericTypes and
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stringTypes lists
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"""
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from dcop import DCOPObject, DCOPClient
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from tdecore import dcop_add, dcop_next
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from python_tqt.qt import TQString, TQCString, TQDataStream, IO_ReadOnly, IO_WriteOnly
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numericTypes = ["char", "bool", "short", "int", "long", "uchar", "ushort", "uint", "ulong",
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"unsigned char", "unsigned short", "unsigned int", "unsigned long",
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"TQ_INT32", "pid_t", "float", "double"]
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stringTypes = ["TQString", "TQCString"]
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class DCOPExObj (DCOPObject):
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def __init__ (self, objid = None):
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if isinstance (objid, str):
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DCOPObject.__init__ (self, objid)
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else:
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DCOPObject.__init__ (self)
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self.methods = {}
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def process (self, meth, data, replyType, replyData):
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# normalize the method signature received
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meth = str (DCOPClient.normalizeFunctionSignature (meth)).replace (">", "> ")
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# see if this method is available from us via DCOP
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# if we don't have it, maybe DCOPObject already provides it (eg - qt object)
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if not self.matchMethod (meth):
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return DCOPObject.process(self, meth, data, replyType, replyData);
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# demarshall the arg list for the actual method call and call the method
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s = TQDataStream (data, IO_ReadOnly)
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arglist = []
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count = len (self.method.argtypes)
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if count == 0:
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result = self.method.pymethod ()
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else:
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for i in range (len (self.method.argtypes)):
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arglist.append (dcop_next (s, TQCString (self.method.argtypes [i])))
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result = self.method.pymethod (*arglist)
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# marshall the result as 'replyData'
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if self.method.rtype != "void":
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s = TQDataStream (replyData, IO_WriteOnly)
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if self.method.rtype in numericTypes:
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dcop_add (s, result, self.method.rtype)
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elif self.method.rtype in stringTypes and isinstance (result, str):
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dcop_add (s, eval ("%s('''%s''')" % (self.method.rtype, result)))
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elif self.method.rtype.startswith ("TQMap") or self.method.rtype.startswith ("TQValueList"):
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dcop_add (params, args [i], self.argtypes [i])
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else:
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if not result:
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dcop_add (s, "")
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else:
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dcop_add (s, result)
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# use append because we want to return the replyType reference,
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# not a new TQCString
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replyType.append (self.method.rtype)
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# success
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return True
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def addMethod (self, signature, pymethod):
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"""
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add a method to the dict - makes it available to DCOP
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signature - a string representing the C++ form of the method declaration
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with arg names removed (eg
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pymethod - the Python method corresponding to the method in signature
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example:
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def someMethod (a, b):
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return str (a + b)
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signature = "TQString someMethod (int, int)"
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pymethod = someMethod
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self.addMethod (signature, pymethod)
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note that in this case you could add a second entry:
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self.addMethod ("TQString someMethod (float, float)", someMethod)
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pymethod can also be a class method, for example - self.someMethod or
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someClass.someMethod. In the second case, someClass has to be an instance
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of a class (perhaps SomeClass), not the class itself.
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self.methods is a dict holding all of the methods exposed, indexed by
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method signature. In the example above, the signature would be:
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someMethod(TQString,TQString)
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or everything but the return type, which is stored in the dict entry.
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The dict entry is a DCOPExMeth instance.
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"""
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method = DCOPExMeth (signature, pymethod)
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if method.sig:
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self.methods [method.sig] = method
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return method.sig != None
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def matchMethod (self, meth):
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# find the method in the dict if it's there
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self.method = None
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if meth in self.methods:
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self.method = self.methods [meth]
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return self.method != None
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def functions (self):
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# build the list of methods exposed for 'remoteFunctions' calls
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# from the entries in the self.methods dict
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funcs = DCOPObject.functions (self)
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for func in self.methods.keys ():
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funcs.append (" ".join ([self.methods [func].rtype, func]))
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return funcs;
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class DCOPExMeth:
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"""
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Encapsulates all of the method data - signature, arg list, return type
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and corresponding Python method to be called
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"""
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def __init__ (self, method, pymethod):
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self.pymethod = pymethod
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if not self.parseMethod (method):
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self.fcnname = self.sig = self.rtype = self.argtypes = None
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def parseMethod (self, method):
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# strip whitespace
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method = str (DCOPClient.normalizeFunctionSignature (method)).replace (">", "> ")
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# the return type (rtype) and signature (sig)
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self.rtype, tail = method.split (" ", 1)
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self.sig = tail
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if not tail:
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return False
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self.rtype = self.rtype.strip ()
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i = tail.find ("(")
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if i < 1:
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return False
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# the name of the method
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self.fcnname = tail [:i].strip () + "("
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# the list of arg types
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self.argtypes = []
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args = tail [i + 1 : -1].split (",")
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if args and args != [""]:
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for arg in args:
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self.argtypes.append (arg.strip ())
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return True
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