mirror of
https://github.com/worldforge/cyphesis
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624 lines
24 KiB
C++
624 lines
24 KiB
C++
// Cyphesis Online RPG Server and AI Engine
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// Copyright (C) 2005 Alistair Riddoch
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//
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// This program is free software; you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation; either version 2 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software Foundation,
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// Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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// $Id: EntityFactorytest.cpp,v 1.11 2006-10-26 00:48:15 alriddoch Exp $
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#include "TestWorld.h"
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#include "rulesets/World.h"
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#include "rulesets/Python_API.h"
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#include "server/EntityFactory.h"
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#include "server/PersistantThingFactory.h"
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#include <Atlas/Objects/Anonymous.h>
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#include <cassert>
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using Atlas::Message::MapType;
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using Atlas::Objects::Entity::Anonymous;
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class ExposedEntityFactory : public EntityFactory {
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public:
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explicit ExposedEntityFactory(BaseWorld & w) : EntityFactory(w) { }
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void getRulesFromFiles(MapType & rules) {
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EntityFactory::getRulesFromFiles(rules);
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}
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void installRules() {
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EntityFactory::installRules();
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}
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void installFactory(const std::string & parent,
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const std::string & clss, FactoryBase * factory) {
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EntityFactory::installFactory(parent, clss, factory);
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}
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void populateFactory(const std::string & className,
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FactoryBase * factory,
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const MapType & classDesc) {
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EntityFactory::populateFactory(className, factory, classDesc);
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}
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FactoryBase * getNewFactory(const std::string & clss) {
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return EntityFactory::getNewFactory(clss);
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}
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int installEntityClass(const std::string & className,
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const std::string & parent,
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const MapType & classDesc) {
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return EntityFactory::installEntityClass(className, parent, classDesc);
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}
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int installOpDefinition(const std::string & opDefName,
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const std::string & parent,
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const MapType & opDefDesc) {
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return EntityFactory::installOpDefinition(opDefName, parent, opDefDesc);
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}
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const FactoryDict & factoryDict() const { return m_factories; }
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};
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int main(int argc, char ** argv)
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{
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loadConfig(argc, argv);
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init_python_api();
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int ret;
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{
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World e("1", 1);
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TestWorld test_world(e);
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Anonymous attributes;
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EntityFactory::init(test_world);
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assert(EntityFactory::instance() != 0);
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assert(EntityFactory::instance()->newEntity("1", 1, "world", attributes) == 0);
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assert(EntityFactory::instance()->newEntity("1", 1, "nonexistant", attributes) == 0);
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assert(EntityFactory::instance()->newEntity("1", 1, "thing", attributes) != 0);
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EntityFactory::del();
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assert(EntityFactory::instance() == 0);
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}
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{
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World e("1", 1);
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TestWorld test_world(e);
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Anonymous attributes;
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Atlas::Message::Element val;
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EntityFactory::init(test_world);
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assert(EntityFactory::instance() != 0);
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Entity * test_ent = EntityFactory::instance()->newEntity("1", 1, "thing", attributes);
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assert(test_ent != 0);
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assert(!test_ent->getAttr("funky", val));
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assert(val.isNone());
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attributes->setAttr("funky", "true");
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test_ent = EntityFactory::instance()->newEntity("1", 1, "thing", attributes);
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assert(test_ent != 0);
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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EntityFactory::del();
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assert(EntityFactory::instance() == 0);
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}
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{
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// Create a test world.
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World e("1", 1);
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TestWorld test_world(e);
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Atlas::Message::Element val;
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// Instance of EntityFactory with all protected methods exposed
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// for testing
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ExposedEntityFactory entity_factory(test_world);
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// Attributes for test entities being created
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Anonymous attributes;
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// Create an entity which is an instance of one of the core classes
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Entity * test_ent = entity_factory.newEntity("1", 1, "thing", attributes);
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assert(test_ent != 0);
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// Check the created entity does not have the attribute values we
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// will be testing later
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assert(!test_ent->getAttr("funky", val));
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assert(val.isNone());
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// Set a test attribute
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attributes->setAttr("funky", "true");
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// Create another entity, and check that it has picked up the new
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// attribute value
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test_ent = entity_factory.newEntity("1", 1, "thing", attributes);
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assert(test_ent != 0);
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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// Check that creating an entity of a type we know we have not yet
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// installed results in a null pointer.
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assert(entity_factory.newEntity("1", 1, "custom_type", attributes) == 0);
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// Get a reference to the internal dictionary of entity factories.
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const FactoryDict & factory_dict = entity_factory.factoryDict();
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// Make sure it has some factories in it already.
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assert(!factory_dict.empty());
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// Assert the dictionary does not contain the factory we know we have
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// have not yet installed.
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assert(factory_dict.find("custom_type") == factory_dict.end());
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// Set up a type description for a new type, and install it.
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{
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MapType custom_type_description;
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MapType attrs;
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MapType test_custom_type_attr;
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test_custom_type_attr["default"] = "test_value";
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test_custom_type_attr["visibility"] = "public";
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attrs["test_custom_type_attr"] = test_custom_type_attr;
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custom_type_description["attributes"] = attrs;
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ret = entity_factory.installEntityClass("custom_type", "thing", custom_type_description);
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assert(ret == 0);
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}
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// Check that the factory dictionary now contains a factory for
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// the custom type we just installed.
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FactoryDict::const_iterator I = factory_dict.find("custom_type");
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assert(I != factory_dict.end());
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FactoryBase * custom_type_factory = I->second;
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// Check the factory has the attributes we described on the custom
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// type.
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MapType::const_iterator J = custom_type_factory->m_attributes.find("test_custom_type_attr");
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assert(J != custom_type_factory->m_attributes.end());
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assert(J->second.isString());
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assert(J->second.String() == "test_value");
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// Create an instance of our custom type, ensuring that it works.
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test_ent = entity_factory.newEntity("1", 1, "custom_type", attributes);
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assert(test_ent != 0);
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute we passed in when creating
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// the instance.
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute described when the
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// custom type was installed.
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assert(test_ent->getAttr("test_custom_type_attr", val));
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assert(val.isString());
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assert(val.String() == "test_value");
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// Check that creating an entity of a type we know we have not yet
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// installed results in a null pointer.
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assert(entity_factory.newEntity("1", 1, "custom_inherited_type", attributes) == 0);
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// Assert the dictionary does not contain the factory we know we have
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// have not yet installed.
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assert(factory_dict.find("custom_inherited_type") == factory_dict.end());
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// Set up a type description for a second new type which inherits
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// from the first, and install it.
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{
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MapType custom_inherited_type_description;
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MapType attrs;
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MapType test_custom_type_attr;
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test_custom_type_attr["default"] = "test_inherited_value";
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test_custom_type_attr["visibility"] = "public";
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attrs["test_custom_inherited_type_attr"] = test_custom_type_attr;
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custom_inherited_type_description["attributes"] = attrs;
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ret = entity_factory.installEntityClass("custom_inherited_type", "custom_type", custom_inherited_type_description);
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assert(ret == 0);
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}
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// Check that the factory dictionary does contain the factory for
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// the second newly installed type
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I = factory_dict.find("custom_inherited_type");
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assert(I != factory_dict.end());
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FactoryBase * custom_inherited_type_factory = I->second;
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assert(custom_inherited_type_factory != 0);
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// Check that the factory has inherited the attributes from the
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// first custom type
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J = custom_inherited_type_factory->m_attributes.find("test_custom_type_attr");
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assert(J != custom_inherited_type_factory->m_attributes.end());
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assert(J->second.isString());
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assert(J->second.String() == "test_value");
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// Check that the factory has the attributes specified when installing
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// it
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J = custom_inherited_type_factory->m_attributes.find("test_custom_inherited_type_attr");
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assert(J != custom_inherited_type_factory->m_attributes.end());
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assert(J->second.isString());
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assert(J->second.String() == "test_inherited_value");
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// Creat an instance of the second custom type, ensuring it works.
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test_ent = entity_factory.newEntity("1", 1, "custom_inherited_type", attributes);
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assert(test_ent != 0);
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute we passed in when creating
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// the instance.
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the instance of the second custom type has the attribute
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// described when the first custom type was installed.
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assert(test_ent->getAttr("test_custom_type_attr", val));
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assert(val.isString());
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assert(val.String() == "test_value");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute described when the
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// second custom type was installed
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assert(test_ent->getAttr("test_custom_inherited_type_attr", val));
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assert(val.isString());
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assert(val.String() == "test_inherited_value");
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// FIXME TODO Modify a type, and ensure attribute propagate to inherited types.
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// Make sure than attempting to modify a non-existant type fails
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{
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Anonymous nonexistant_description;
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MapType attrs;
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MapType test_custom_type_attr;
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test_custom_type_attr["default"] = "no_value";
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test_custom_type_attr["visibility"] = "public";
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attrs["no_custom_type_attr"] = test_custom_type_attr;
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nonexistant_description->setAttr("attributes", attrs);
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ret = entity_factory.modifyRule("nonexistant", nonexistant_description);
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assert(ret != 0);
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}
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// Modify the second custom type removing its custom attribute
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{
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Anonymous new_custom_inherited_type_description;
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new_custom_inherited_type_description->setAttr("attributes", MapType());
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ret = entity_factory.modifyRule("custom_inherited_type", new_custom_inherited_type_description);
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assert(ret == 0);
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}
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// Check that the factory dictionary does contain the factory for
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// the second newly installed type
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I = factory_dict.find("custom_inherited_type");
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assert(I != factory_dict.end());
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custom_inherited_type_factory = I->second;
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assert(custom_inherited_type_factory != 0);
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// Check that the factory has inherited the attributes from the
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// first custom type
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J = custom_inherited_type_factory->m_attributes.find("test_custom_type_attr");
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assert(J != custom_inherited_type_factory->m_attributes.end());
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assert(J->second.isString());
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assert(J->second.String() == "test_value");
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// Check that the factory no longer has the attributes we removed
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J = custom_inherited_type_factory->m_attributes.find("test_custom_inherited_type_attr");
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assert(J == custom_inherited_type_factory->m_attributes.end());
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// Creat an instance of the second custom type, ensuring it works.
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test_ent = entity_factory.newEntity("1", 1, "custom_inherited_type", attributes);
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assert(test_ent != 0);
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Make sure test nonexistant attribute isn't present
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assert(!test_ent->getAttr("nonexistant", val));
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// Make sure nonexistant attribute isn't present
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assert(!test_ent->getAttr("nonexistant_attribute", val));
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute we passed in when creating
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// the instance.
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the instance of the second custom type has the attribute
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// described when the first custom type was installed.
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assert(test_ent->getAttr("test_custom_type_attr", val));
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assert(val.isString());
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assert(val.String() == "test_value");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute described when the
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// second custom type was installed
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assert(!test_ent->getAttr("test_custom_inherited_type_attr", val));
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// Modify the first custom type removing its custom attribute
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{
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Anonymous new_custom_type_description;
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new_custom_type_description->setAttr("attributes", MapType());
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ret = entity_factory.modifyRule("custom_type", new_custom_type_description);
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assert(ret == 0);
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}
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// Check that the factory dictionary now contains a factory for
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// the custom type we just installed.
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I = factory_dict.find("custom_type");
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assert(I != factory_dict.end());
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custom_type_factory = I->second;
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// Check the factory has the attributes we described on the custom
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// type.
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J = custom_type_factory->m_attributes.find("test_custom_type_attr");
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assert(J == custom_type_factory->m_attributes.end());
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// Create an instance of our custom type, ensuring that it works.
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test_ent = entity_factory.newEntity("1", 1, "custom_type", attributes);
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assert(test_ent != 0);
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute we passed in when creating
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// the instance.
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type no longer has the custom attribute
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assert(!test_ent->getAttr("test_custom_type_attr", val));
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// Check that the factory dictionary does contain the factory for
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// the second newly installed type
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I = factory_dict.find("custom_inherited_type");
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assert(I != factory_dict.end());
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custom_inherited_type_factory = I->second;
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assert(custom_inherited_type_factory != 0);
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// Check that the factory no longer has inherited the attributes
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// from the first custom type which we removed
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J = custom_inherited_type_factory->m_attributes.find("test_custom_type_attr");
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assert(J == custom_inherited_type_factory->m_attributes.end());
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// Check that the factory no longer has the attributes we removed
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J = custom_inherited_type_factory->m_attributes.find("test_custom_inherited_type_attr");
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assert(J == custom_inherited_type_factory->m_attributes.end());
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// Creat an instance of the second custom type, ensuring it works.
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test_ent = entity_factory.newEntity("1", 1, "custom_inherited_type", attributes);
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assert(test_ent != 0);
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Make sure test nonexistant attribute isn't present
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assert(!test_ent->getAttr("nonexistant", val));
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// Make sure nonexistant attribute isn't present
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assert(!test_ent->getAttr("nonexistant_attribute", val));
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute we passed in when creating
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// the instance.
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assert(test_ent->getAttr("funky", val));
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assert(val.isString());
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assert(val.String() == "true");
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the instance of the second custom type has the attribute
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// described when the first custom type was installed.
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assert(!test_ent->getAttr("test_custom_type_attr", val));
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// Reset val.
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val = Atlas::Message::Element();
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assert(val.isNone());
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// Check the custom type has the attribute described when the
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// second custom type was installed
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assert(!test_ent->getAttr("test_custom_inherited_type_attr", val));
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// Add more custom attributes to the first type
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{
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Anonymous new_custom_type_description;
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MapType attrs;
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MapType test_custom_type_attr;
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test_custom_type_attr["default"] = "test_value";
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test_custom_type_attr["visibility"] = "public";
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attrs["test_custom_type_attr"] = test_custom_type_attr;
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MapType new_custom_type_attr;
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new_custom_type_attr["default"] = "new_value";
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new_custom_type_attr["visibility"] = "public";
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attrs["new_custom_type_attr"] = new_custom_type_attr;
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new_custom_type_description->setAttr("attributes", attrs);
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ret = entity_factory.modifyRule("custom_type", new_custom_type_description);
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assert(ret == 0);
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}
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// Check that the factory dictionary now contains a factory for
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// the custom type we just installed.
|
|
I = factory_dict.find("custom_type");
|
|
assert(I != factory_dict.end());
|
|
custom_type_factory = I->second;
|
|
|
|
// Check the factory has the attributes we described on the custom
|
|
// type.
|
|
J = custom_type_factory->m_attributes.find("test_custom_type_attr");
|
|
assert(J != custom_type_factory->m_attributes.end());
|
|
assert(J->second.isString());
|
|
assert(J->second.String() == "test_value");
|
|
|
|
J = custom_type_factory->m_attributes.find("new_custom_type_attr");
|
|
assert(J != custom_type_factory->m_attributes.end());
|
|
assert(J->second.isString());
|
|
assert(J->second.String() == "new_value");
|
|
|
|
// Create an instance of our custom type, ensuring that it works.
|
|
test_ent = entity_factory.newEntity("1", 1, "custom_type", attributes);
|
|
assert(test_ent != 0);
|
|
|
|
// Reset val.
|
|
val = Atlas::Message::Element();
|
|
assert(val.isNone());
|
|
|
|
// Check the custom type has the attribute we passed in when creating
|
|
// the instance.
|
|
assert(test_ent->getAttr("funky", val));
|
|
assert(val.isString());
|
|
assert(val.String() == "true");
|
|
|
|
// Reset val.
|
|
val = Atlas::Message::Element();
|
|
assert(val.isNone());
|
|
|
|
// Check the custom type now has the custom attributes
|
|
assert(test_ent->getAttr("test_custom_type_attr", val));
|
|
assert(val.isString());
|
|
assert(val.String() == "test_value");
|
|
|
|
assert(test_ent->getAttr("new_custom_type_attr", val));
|
|
assert(val.isString());
|
|
assert(val.String() == "new_value");
|
|
|
|
// Check that the factory dictionary does contain the factory for
|
|
// the second newly installed type
|
|
I = factory_dict.find("custom_inherited_type");
|
|
assert(I != factory_dict.end());
|
|
custom_inherited_type_factory = I->second;
|
|
assert(custom_inherited_type_factory != 0);
|
|
|
|
// Check that the factory now has inherited the attributes
|
|
// from the first custom type
|
|
J = custom_inherited_type_factory->m_attributes.find("test_custom_type_attr");
|
|
assert(J != custom_inherited_type_factory->m_attributes.end());
|
|
assert(J->second.isString());
|
|
assert(J->second.String() == "test_value");
|
|
|
|
J = custom_inherited_type_factory->m_attributes.find("new_custom_type_attr");
|
|
assert(J != custom_inherited_type_factory->m_attributes.end());
|
|
assert(J->second.isString());
|
|
assert(J->second.String() == "new_value");
|
|
|
|
// Check that the factory no longer has the attributes we removed
|
|
J = custom_inherited_type_factory->m_attributes.find("test_custom_inherited_type_attr");
|
|
assert(J == custom_inherited_type_factory->m_attributes.end());
|
|
|
|
// Creat an instance of the second custom type, ensuring it works.
|
|
test_ent = entity_factory.newEntity("1", 1, "custom_inherited_type", attributes);
|
|
assert(test_ent != 0);
|
|
|
|
// Reset val.
|
|
val = Atlas::Message::Element();
|
|
assert(val.isNone());
|
|
|
|
// Make sure test nonexistant attribute isn't present
|
|
assert(!test_ent->getAttr("nonexistant", val));
|
|
// Make sure nonexistant attribute isn't present
|
|
assert(!test_ent->getAttr("nonexistant_attribute", val));
|
|
|
|
// Reset val.
|
|
val = Atlas::Message::Element();
|
|
assert(val.isNone());
|
|
|
|
// Check the custom type has the attribute we passed in when creating
|
|
// the instance.
|
|
assert(test_ent->getAttr("funky", val));
|
|
assert(val.isString());
|
|
assert(val.String() == "true");
|
|
|
|
// Reset val.
|
|
val = Atlas::Message::Element();
|
|
assert(val.isNone());
|
|
|
|
// Check the instance of the second custom type has the attribute
|
|
// described when the first custom type was installed.
|
|
assert(test_ent->getAttr("test_custom_type_attr", val));
|
|
assert(val.isString());
|
|
assert(val.String() == "test_value");
|
|
|
|
assert(test_ent->getAttr("new_custom_type_attr", val));
|
|
assert(val.isString());
|
|
assert(val.String() == "new_value");
|
|
|
|
// Reset val.
|
|
val = Atlas::Message::Element();
|
|
assert(val.isNone());
|
|
|
|
// Check the custom type no longer has the attribute described when the
|
|
// second custom type was installed
|
|
assert(!test_ent->getAttr("test_custom_inherited_type_attr", val));
|
|
|
|
}
|
|
}
|