# Copyright (c) 2000-2001 ActiveState Tool Corporation. # See the file LICENSE.txt for licensing information. # This is a demo is how to use the xpcom.server "tracer" facility. # # This demo installs a tracer that uses the Python profiler. It then # creates the Python test component, and references some methods # and properties. It then dumps the profile statistics. # This same technique could also be used for debugging, for example. import profile p = profile.Profile() getters = {} setters = {} # A wrapper around a function - looks like a function, # but actually profiles the delegate. class TracerDelegate: def __init__(self, callme): self.callme = callme def __call__(self, *args): return p.runcall(self.callme, *args) # A wrapper around each of our XPCOM objects. All PyXPCOM calls # in are made on this object, which creates a TracerDelagate around # every function. As the function is called, it collects profile info. class Tracer: def __init__(self, ob): self.__dict__['_ob'] = ob def __repr__(self): return "" % (self._ob,) def __str__(self): return "" % (self._ob,) def __getattr__(self, attr): ret = getattr(self._ob, attr) # Attribute error just goes up if callable(ret): return TracerDelegate(ret) else: if not attr.startswith("_com_") and not attr.startswith("_reg_"): getters[attr] = getters.setdefault(attr,0) + 1 return ret def __setattr__(self, attr, val): if self.__dict__.has_key(attr): self.__dict__[attr] = val return setters[attr] = setters.setdefault(attr,0) + 1 setattr(self._ob, attr, val) # Installed as a global XPCOM function that if exists, will be called # to wrap each XPCOM object created. def MakeTracer(ob): # In some cases we may be asked to wrap ourself, so handle that. if isinstance(ob, Tracer): return ob return Tracer(ob) def test(): import xpcom.server, xpcom.components xpcom.server.tracer = MakeTracer contractid = "Python.TestComponent" for i in range(100): c = xpcom.components.classes[contractid].createInstance().queryInterface(xpcom.components.interfaces.nsIPythonTestInterface) c.boolean_value = 0 a = c.boolean_value c.do_boolean(0,1) print "Finshed" p.print_stats() print "%-30s%s" % ("Attribute Gets", "Number") print "-" * 36 for name, num in getters.items(): print "%-30s%d" % (name, num) print "%-30s%s" % ("Attribute Sets", "Number") print "-" * 36 for name, num in setters.items(): print "%-30s%d" % (name, num) test()