void PropertyOwner::serialize(XmlSerializer& s) const { // create temporary property map for serialization std::map<std::string, Property*> propertyMap; for (std::vector<Property*>::const_iterator it = properties_.begin(); it != properties_.end(); ++it) propertyMap[(*it)->getID()] = *it; // serialize properties const bool usePointerContentSerialization = s.getUsePointerContentSerialization(); s.setUsePointerContentSerialization(true); try { s.serialize("Properties", propertyMap, "Property", "name"); } catch (SerializationException& e) { LWARNING(e.what()); } s.setUsePointerContentSerialization(usePointerContentSerialization); }
/** * Tests serialization and deserialization using pointer content serialization * mixed up with using XML attributes. * * @attention This is a grey box test which uses implementation details * to keep the test as short as possible. That is why * you have to consider changing the test every time * the implementation details have changed. */ void testUsePointerContentSerialization() { int i = 1; int* ip = &i; std::vector<int*> v; v.push_back(new int(2)); std::map<std::string, int*> m; m["three"] = new int(3); std::stringstream stream; XmlSerializer s; s.setUsePointerContentSerialization(true); s.serialize("i", i); s.serialize("ip", ip); s.serialize("v", v); s.serialize("m", m, "number"); s.setUseAttributes(true); s.serialize("ai", i); s.serialize("aip", ip); s.serialize("av", v); s.serialize("am", m, "number"); s.write(stream); // Reset all variables to default values... i = 0; ip = new int(0); *v[0] = 0; *m["three"] = 0; int ai = 0; int* aip = new int(0); std::vector<int*> av; av.push_back(new int(0)); std::map<std::string, int*> am; am["three"] = new int(0); XmlDeserializer d; d.read(stream); d.setUsePointerContentSerialization(true); d.deserialize("i", i); d.deserialize("ip", ip); d.deserialize("v", v); d.deserialize("m", m, "number"); d.setUseAttributes(true); d.deserialize("ai", ai); d.deserialize("aip", aip); d.deserialize("av", av); d.deserialize("am", am, "number"); test(i, 1, "i incorrect deserialized"); test(ip != &i, "ip is pointing to adress of i"); test(*ip, 1, "ip incorrect deserialized"); test(v.size() == 1, "v: incorrect size"); test(*v[0], 2, "v: first item incorrect deserialized"); test(m.size() == 1, "m: incorrect size"); test(*m["three"], 3, "m: first item incorrect deserialized"); test(ai, 1, "ai incorrect deserialized"); test(aip != &ai, "aip is pointing to adress of ai"); test(*aip, 1, "aip incorrect deserialized"); test(av.size() == 1, "av: incorrect size"); test(*av[0], 2, "av: first item incorrect deserialized"); test(am.size() == 1, "am: incorrect size"); test(*am["three"], 3, "am: first item incorrect deserialized"); delete ip; delete v[0]; delete m["three"]; delete aip; delete av[0]; delete am["three"]; }