// Cyphesis Online RPG Server and AI Engine // Copyright (C) 2003 Alistair Riddoch // // This program is free software; you can redistribute it and/or modify // it under the terms of the GNU General Public License as published by // the Free Software Foundation; either version 2 of the License, or // (at your option) any later version. // // This program is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the // GNU General Public License for more details. // // You should have received a copy of the GNU General Public License // along with this program; if not, write to the Free Software Foundation, // Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA // $Id$ #ifdef NDEBUG #undef NDEBUG #endif #ifndef DEBUG #define DEBUG #endif #include "IGEntityExerciser.h" #include "TestBase.h" #include "allOperations.h" #include "TestWorld.h" #include "rulesets/Creator.h" #include "rulesets/Python_API.h" #include "rulesets/Script.h" #include "modules/EntityRef.h" #include "common/id.h" #include "common/log.h" #include "common/Property_impl.h" #include "common/TypeNode.h" #include #include using Atlas::Message::MapType; using Atlas::Message::ListType; using Atlas::Objects::Operation::RootOperation; class Creatortest : public Cyphesis::TestBase { private: static Operation m_Character_filterExternalOperation_called; Creator * m_creator; TypeNode * m_type; public: Creatortest(); void setup(); void teardown(); void test_exerciser(); void test_externalOperation_normal(); static void Character_filterExternalOperation_called(const Operation & op); }; Operation Creatortest::m_Character_filterExternalOperation_called(0); void Creatortest::Character_filterExternalOperation_called(const Operation & op) { m_Character_filterExternalOperation_called = op; } Creatortest::Creatortest() { ADD_TEST(Creatortest::test_exerciser); ADD_TEST(Creatortest::test_externalOperation_normal); } void Creatortest::setup() { m_creator = new Creator("1", 1); m_type = new TypeNode("character"); m_creator->setType(m_type); m_Character_filterExternalOperation_called = 0; } void Creatortest::teardown() { delete m_creator; delete m_type; } void Creatortest::test_exerciser() { IGEntityExerciser ee(*m_creator); // Throw an op of every type at the entity ee.runOperations(); // Subscribe the entity to every class of op std::set opNames; ee.addAllOperations(opNames); // Throw an op of every type at the entity again now it is subscribed ee.runOperations(); } void Creatortest::test_externalOperation_normal() { RootOperation op; op->setFrom(m_creator->getId()); m_creator->externalOperation(op, *(Link*)0); ASSERT_TRUE(m_Character_filterExternalOperation_called.isValid()); ASSERT_EQUAL(m_Character_filterExternalOperation_called->getClassNo(), Atlas::Objects::Operation::ROOT_OPERATION_NO); } int main(int argc, char ** argv) { Creatortest t; return t.run(); } // stubs void TestWorld::message(const Operation & op, LocatedEntity & ent) { } LocatedEntity * TestWorld::addNewEntity(const std::string &, const Atlas::Objects::Entity::RootEntity &) { return 0; } namespace Atlas { namespace Objects { namespace Operation { int ACTUATE_NO = -1; int ATTACK_NO = -1; int EAT_NO = -1; int GOAL_INFO_NO = -1; int NOURISH_NO = -1; int SETUP_NO = -1; int TICK_NO = -1; int THOUGHT_NO = -1; int UNSEEN_NO = -1; int UPDATE_NO = -1; } } } Character::Character(const std::string & id, long intId) : Thing(id, intId), m_movement(*(Movement*)0), m_mind(0), m_externalMind(0) { } Character::~Character() { } void Character::operation(const Operation & op, OpVector &) { } void Character::externalOperation(const Operation & op, Link &) { filterExternalOperation(op); } void Character::filterExternalOperation(const Operation & op) { Creatortest::Character_filterExternalOperation_called(op); } void Character::ImaginaryOperation(const Operation & op, OpVector &) { } void Character::InfoOperation(const Operation & op, OpVector &) { } void Character::TickOperation(const Operation & op, OpVector &) { } void Character::TalkOperation(const Operation & op, OpVector &) { } void Character::NourishOperation(const Operation & op, OpVector &) { } void Character::UseOperation(const Operation & op, OpVector &) { } void Character::WieldOperation(const Operation & op, OpVector &) { } void Character::AttackOperation(const Operation & op, OpVector &) { } void Character::ActuateOperation(const Operation & op, OpVector &) { } void Character::mindActuateOperation(const Operation &, OpVector &) { } void Character::mindAttackOperation(const Operation &, OpVector &) { } void Character::mindCombineOperation(const Operation &, OpVector &) { } void Character::mindCreateOperation(const Operation &, OpVector &) { } void Character::mindDeleteOperation(const Operation &, OpVector &) { } void Character::mindDivideOperation(const Operation &, OpVector &) { } void Character::mindEatOperation(const Operation &, OpVector &) { } void Character::mindGoalInfoOperation(const Operation &, OpVector &) { } void Character::mindImaginaryOperation(const Operation &, OpVector &) { } void Character::mindLookOperation(const Operation &, OpVector &) { } void Character::mindMoveOperation(const Operation &, OpVector &) { } void Character::mindSetOperation(const Operation &, OpVector &) { } void Character::mindSetupOperation(const Operation &, OpVector &) { } void Character::mindTalkOperation(const Operation &, OpVector &) { } void Character::mindThoughtOperation(const Operation &, OpVector &) { } void Character::mindTickOperation(const Operation &, OpVector &) { } void Character::mindTouchOperation(const Operation &, OpVector &) { } void Character::mindUpdateOperation(const Operation &, OpVector &) { } void Character::mindUseOperation(const Operation &, OpVector &) { } void Character::mindWieldOperation(const Operation &, OpVector &) { } void Character::mindOtherOperation(const Operation &, OpVector &) { } void Character::sendMind(const Operation & op, OpVector & res) { } Thing::Thing(const std::string & id, long intId) : Entity(id, intId) { } Thing::~Thing() { } void Thing::DeleteOperation(const Operation & op, OpVector & res) { } void Thing::MoveOperation(const Operation & op, OpVector & res) { } void Thing::SetOperation(const Operation & op, OpVector & res) { } void Thing::LookOperation(const Operation & op, OpVector & res) { } void Thing::CreateOperation(const Operation & op, OpVector & res) { } void Thing::UpdateOperation(const Operation & op, OpVector & res) { } Entity::Entity(const std::string & id, long intId) : LocatedEntity(id, intId), m_motion(0) { } Entity::~Entity() { } void Entity::destroy() { destroyed.emit(); } void Entity::ActuateOperation(const Operation &, OpVector &) { } void Entity::AppearanceOperation(const Operation &, OpVector &) { } void Entity::AttackOperation(const Operation &, OpVector &) { } void Entity::CombineOperation(const Operation &, OpVector &) { } void Entity::CreateOperation(const Operation &, OpVector &) { } void Entity::DeleteOperation(const Operation &, OpVector &) { } void Entity::DisappearanceOperation(const Operation &, OpVector &) { } void Entity::DivideOperation(const Operation &, OpVector &) { } void Entity::EatOperation(const Operation &, OpVector &) { } void Entity::GetOperation(const Operation &, OpVector &) { } void Entity::InfoOperation(const Operation &, OpVector &) { } void Entity::ImaginaryOperation(const Operation &, OpVector &) { } void Entity::LookOperation(const Operation &, OpVector &) { } void Entity::MoveOperation(const Operation &, OpVector &) { } void Entity::NourishOperation(const Operation &, OpVector &) { } void Entity::SetOperation(const Operation &, OpVector &) { } void Entity::SightOperation(const Operation &, OpVector &) { } void Entity::SoundOperation(const Operation &, OpVector &) { } void Entity::TalkOperation(const Operation &, OpVector &) { } void Entity::TickOperation(const Operation &, OpVector &) { } void Entity::TouchOperation(const Operation &, OpVector &) { } void Entity::UpdateOperation(const Operation &, OpVector &) { } void Entity::UseOperation(const Operation &, OpVector &) { } void Entity::WieldOperation(const Operation &, OpVector &) { } void Entity::externalOperation(const Operation & op, Link &) { } void Entity::operation(const Operation & op, OpVector & res) { } void Entity::addToMessage(Atlas::Message::MapType & omap) const { } void Entity::addToEntity(const Atlas::Objects::Entity::RootEntity & ent) const { } PropertyBase * Entity::setAttr(const std::string & name, const Atlas::Message::Element & attr) { return 0; } const PropertyBase * Entity::getProperty(const std::string & name) const { return 0; } PropertyBase * Entity::setProperty(const std::string & name, PropertyBase * prop) { return 0; } void Entity::installDelegate(int class_no, const std::string & delegate) { } Domain * Entity::getMovementDomain() { return 0; } void Entity::sendWorld(const Operation & op) { } PropertyBase * Entity::modProperty(const std::string & name) { return 0; } void Entity::onContainered() { } void Entity::onUpdated() { } void Entity::callOperation(const Operation & op, OpVector & res) { } LocatedEntity::LocatedEntity(const std::string & id, long intId) : Router(id, intId), m_refCount(0), m_seq(0), m_script(0), m_type(0), m_flags(0), m_contains(0) { } LocatedEntity::~LocatedEntity() { } bool LocatedEntity::hasAttr(const std::string & name) const { return false; } int LocatedEntity::getAttr(const std::string & name, Atlas::Message::Element & attr) const { return -1; } int LocatedEntity::getAttrType(const std::string & name, Atlas::Message::Element & attr, int type) const { return -1; } PropertyBase * LocatedEntity::setAttr(const std::string & name, const Atlas::Message::Element & attr) { return 0; } const PropertyBase * LocatedEntity::getProperty(const std::string & name) const { return 0; } PropertyBase * LocatedEntity::modProperty(const std::string & name) { return 0; } PropertyBase * LocatedEntity::setProperty(const std::string & name, PropertyBase * prop) { return 0; } void LocatedEntity::installDelegate(int, const std::string &) { } void LocatedEntity::destroy() { } Domain * LocatedEntity::getMovementDomain() { return 0; } void LocatedEntity::sendWorld(const Operation & op) { } void LocatedEntity::onContainered() { } void LocatedEntity::onUpdated() { } void LocatedEntity::makeContainer() { if (m_contains == 0) { m_contains = new LocatedEntitySet; } } void LocatedEntity::merge(const MapType & ent) { } Router::Router(const std::string & id, long intId) : m_id(id), m_intId(intId) { } Router::~Router() { } void Router::addToMessage(Atlas::Message::MapType & omap) const { } void Router::addToEntity(const Atlas::Objects::Entity::RootEntity & ent) const { } void Router::error(const Operation & op, const std::string & errstring, OpVector & res, const std::string & to) const { } BaseWorld * BaseWorld::m_instance = 0; BaseWorld::BaseWorld(LocatedEntity & gw) : m_gameWorld(gw) { m_instance = this; } BaseWorld::~BaseWorld() { m_instance = 0; } LocatedEntity * BaseWorld::getEntity(const std::string & id) const { long intId = integerId(id); EntityDict::const_iterator I = m_eobjects.find(intId); if (I != m_eobjects.end()) { assert(I->second != 0); return I->second; } else { return 0; } } LocatedEntity * BaseWorld::getEntity(long id) const { EntityDict::const_iterator I = m_eobjects.find(id); if (I != m_eobjects.end()) { assert(I->second != 0); return I->second; } else { return 0; } } Script::Script() { } /// \brief Script destructor Script::~Script() { } bool Script::operation(const std::string & opname, const Atlas::Objects::Operation::RootOperation & op, OpVector & res) { return false; } void Script::hook(const std::string & function, LocatedEntity * entity) { } void Location::addToMessage(MapType & omap) const { } Location::Location() : m_loc(0) { } Location::Location(LocatedEntity * rf, const Point3D & pos) { } void Location::addToEntity(const Atlas::Objects::Entity::RootEntity & ent) const { } TypeNode::TypeNode(const std::string & name) : m_name(name), m_parent(0) { } TypeNode::~TypeNode() { } PropertyBase::PropertyBase(unsigned int flags) : m_flags(flags) { } PropertyBase::~PropertyBase() { } void PropertyBase::install(LocatedEntity *, const std::string & name) { } void PropertyBase::apply(LocatedEntity *) { } void PropertyBase::add(const std::string & s, Atlas::Message::MapType & ent) const { get(ent[s]); } void PropertyBase::add(const std::string & s, const Atlas::Objects::Entity::RootEntity & ent) const { } HandlerResult PropertyBase::operation(LocatedEntity *, const Operation &, OpVector &) { return OPERATION_IGNORED; } template<> void Property::set(const Atlas::Message::Element & e) { if (e.isInt()) { this->m_data = e.asInt(); } } template<> void Property::set(const Atlas::Message::Element & e) { if (e.isNum()) { this->m_data = e.asNum(); } } template<> void Property::set(const Atlas::Message::Element & e) { if (e.isString()) { this->m_data = e.String(); } } template class Property; template class Property; template class Property; SoftProperty::SoftProperty() { } SoftProperty::SoftProperty(const Atlas::Message::Element & data) : PropertyBase(0), m_data(data) { } int SoftProperty::get(Atlas::Message::Element & val) const { val = m_data; return 0; } void SoftProperty::set(const Atlas::Message::Element & val) { } SoftProperty * SoftProperty::copy() const { return 0; } PropertyManager * PropertyManager::m_instance = 0; PropertyManager::PropertyManager() { assert(m_instance == 0); m_instance = this; } PropertyManager::~PropertyManager() { m_instance = 0; } int PropertyManager::installFactory(const std::string & type_name, const Atlas::Objects::Root & type_desc, PropertyKit * factory) { return 0; } void log(LogLevel lvl, const std::string & msg) { } long integerId(const std::string & id) { long intId = strtol(id.c_str(), 0, 10); if (intId == 0 && id != "0") { intId = -1L; } return intId; } template int fromStdVector(Point3D & p, const std::vector & vf) { if (vf.size() != 3) { return -1; } p[0] = vf[0]; p[1] = vf[1]; p[2] = vf[2]; p.setValid(); return 0; } template int fromStdVector(Vector3D & v, const std::vector & vf) { if (vf.size() != 3) { return -1; } v[0] = vf[0]; v[1] = vf[1]; v[2] = vf[2]; v.setValid(); return 0; } template int fromStdVector(Point3D & p, const std::vector & vf); template int fromStdVector(Vector3D & v, const std::vector & vf); EntityRef::EntityRef(LocatedEntity* e) : m_inner(e) { } EntityRef::EntityRef(const EntityRef& ref) : m_inner(ref.m_inner) { } EntityRef& EntityRef::operator=(const EntityRef& ref) { m_inner = ref.m_inner; return *this; } void EntityRef::onEntityDeleted() { } const Vector3D distanceTo(const Location & self, const Location & other) { return Vector3D(1,0,0); } template const Quaternion quaternionFromTo(const V & from, const V & to) { return Quaternion(1.f, 0.f, 0.f, 0.f); } template const Quaternion quaternionFromTo(const Vector3D &, const Vector3D&); void addToEntity(const Point3D & p, std::vector & vd) { }