cyphesis/tests/PropertyEntityIntegration.cpp
Erik Ogenvik 1c69b3aae6 Use camel casing for tests.
This makes it much easier to find them in various editors.
2016-06-26 20:17:18 +02:00

483 lines
12 KiB
C++

// Cyphesis Online RPG Server and AI Engine
// Copyright (C) 2013 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
#ifdef NDEBUG
#undef NDEBUG
#endif
#ifndef DEBUG
#define DEBUG
#endif
#include "TestBase.h"
#include "TestWorld.h"
#include "rulesets/Entity.h"
#include "common/Property.h"
#include "common/PropertyManager.h"
#include "common/TypeNode.h"
#include <cstdlib>
#include <cassert>
using Atlas::Message::Element;
using Atlas::Message::MapType;
using Atlas::Message::ListType;
// If tests fail, and print out the message below, you'll have to actually
// implement this function to find out the details.
std::ostream & operator<<(std::ostream & os, const MapType & v)
{
os << "[ATLAS_MAP]";
return os;
}
std::ostream & operator<<(std::ostream & os,
const PropertyDict::const_iterator &)
{
os << "[iterator]";
return os;
}
template<typename T>
class test_values
{
public:
static const char * name;
static T initial_value;
static T default_value;
};
template<>
const char * test_values<long>::name = "test_int";
template<>
long test_values<long>::initial_value = 42;
template<>
long test_values<long>::default_value = 23;
template<>
const char * test_values<double>::name = "test_float";
template<>
double test_values<double>::initial_value = 69.5;
template<>
double test_values<double>::default_value = 17.5;
template<>
const char * test_values<std::string>::name = "test_string";
template<>
std::string test_values<std::string>::initial_value =
"1356ebe4-220d-46a7-8c69-73f787f6b1ff";
template<>
std::string test_values<std::string>::default_value =
"1423a858-f7c6-4b3c-8b0b-726af6dcbeff";
template<>
const char * test_values<MapType>::name = "test_map";
template<>
MapType test_values<MapType>::initial_value = {
std::make_pair("map_int", 23),
std::make_pair("map_float", 17.5f),
};
template<>
MapType test_values<MapType>::default_value = {
std::make_pair("map_int", 42l),
std::make_pair("map_float", 69.5f),
};
class TestPropertyManager : public PropertyManager
{
public:
virtual ~TestPropertyManager();
virtual PropertyBase * addProperty(const std::string & name, int type);
};
TestPropertyManager::~TestPropertyManager()
{
}
PropertyBase * TestPropertyManager::addProperty(const std::string & name,
int type)
{
if (name == test_values<long>::name) {
return new Property<long>;
} else if (name == test_values<double>::name) {
return new Property<double>;
} else if (name == test_values<std::string>::name) {
return new Property<std::string>;
} else if (name == test_values<MapType>::name) {
return new Property<MapType>;
} else {
return new SoftProperty;
}
}
class PropertyEntityintegration : public Cyphesis::TestBase
{
private:
TypeNode * m_type;
Entity * m_entity;
public:
PropertyEntityintegration();
void setup();
void teardown();
template<class T>
void test_requirePropertyClass();
template<class T>
void test_requirePropertyClass_default();
template<class T>
void test_modProperty();
template<class T>
void test_modPropertyClass();
};
template<class T>
void PropertyEntityintegration::test_requirePropertyClass()
{
auto p = m_entity->requirePropertyClass<Property<T>>("bill");
ASSERT_NOT_NULL(p);
}
template<class T>
void PropertyEntityintegration::test_requirePropertyClass_default()
{
auto p = m_entity->requirePropertyClass<Property<T>>("bill",
Element(test_values<T>::default_value));
ASSERT_EQUAL(p->data(), test_values<T>::default_value);
}
template<class T>
void PropertyEntityintegration::test_modProperty()
{
// Get a pointer to the types default property
PropertyBase * dflt = m_type->defaults().find(test_values<T>::name)->second;
ASSERT_NOT_NULL(dflt);
ASSERT_TRUE(dflt->flags() & flag_class);
// The entity instance should not have a property by this name
ASSERT_EQUAL(m_entity->m_properties.find(test_values<T>::name),
m_entity->m_properties.end());
PropertyBase * p = m_entity->modProperty(test_values<T>::name);
ASSERT_NOT_NULL(p);
ASSERT_TRUE((p->flags() & flag_class) == 0);
// modProperty should have forced a new object
ASSERT_NOT_EQUAL(p, dflt);
auto subp = dynamic_cast<Property<T> *>(p);
ASSERT_NOT_NULL(subp);
}
template<class T>
void PropertyEntityintegration::test_modPropertyClass()
{
// Get a pointer to the types default property
PropertyBase * dflt = m_type->defaults().find(test_values<T>::name)->second;
ASSERT_NOT_NULL(dflt);
ASSERT_TRUE(dflt->flags() & flag_class);
// The entity instance should not have a property by this name
ASSERT_EQUAL(m_entity->m_properties.find(test_values<T>::name),
m_entity->m_properties.end());
auto p = m_entity->modPropertyClass<Property<T>>(
test_values<T>::name
);
ASSERT_NOT_NULL(p);
ASSERT_TRUE((p->flags() & flag_class) == 0);
// modProperty should have forced a new object
ASSERT_NOT_EQUAL(p, dflt);
ASSERT_EQUAL(p->data(), test_values<T>::initial_value);
}
PropertyEntityintegration::PropertyEntityintegration()
{
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass<long>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass<double>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass<std::string>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass<MapType>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass_default<long>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass_default<double>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass_default<std::string>);
ADD_TEST(PropertyEntityintegration::test_requirePropertyClass_default<MapType>);
ADD_TEST(PropertyEntityintegration::test_modProperty<long>);
ADD_TEST(PropertyEntityintegration::test_modProperty<double>);
ADD_TEST(PropertyEntityintegration::test_modProperty<std::string>);
ADD_TEST(PropertyEntityintegration::test_modProperty<MapType>);
ADD_TEST(PropertyEntityintegration::test_modPropertyClass<long>);
ADD_TEST(PropertyEntityintegration::test_modPropertyClass<double>);
ADD_TEST(PropertyEntityintegration::test_modPropertyClass<std::string>);
ADD_TEST(PropertyEntityintegration::test_modPropertyClass<MapType>);
}
void PropertyEntityintegration::setup()
{
new TestPropertyManager;
m_type = new TypeNode("test_type");
m_type->addProperties(MapType{
std::make_pair(test_values<long>::name,
test_values<long>::initial_value),
std::make_pair(test_values<double>::name,
test_values<double>::initial_value),
std::make_pair(test_values<std::string>::name,
test_values<std::string>::initial_value),
std::make_pair(test_values<MapType>::name,
test_values<MapType>::initial_value)
});
m_entity = new Entity("1", 1L);
m_entity->setType(m_type);
}
void PropertyEntityintegration::teardown()
{
delete m_entity;
delete m_type;
delete PropertyManager::instance();
}
int main()
{
PropertyEntityintegration t;
return t.run();
}
// stubs
#include "rulesets/AtlasProperties.h"
#include "rulesets/Domain.h"
#include "rulesets/DomainProperty.h"
#include "rulesets/Script.h"
#include "common/id.h"
void TestWorld::message(const Operation & op, LocatedEntity & ent)
{
}
LocatedEntity * TestWorld::addNewEntity(const std::string &,
const Atlas::Objects::Entity::RootEntity &)
{
return 0;
}
#include "stubs/common/stubVariable.h"
#include "stubs/common/stubMonitors.h"
#include "stubs/common/stubCustom.h"
#include "stubs/rulesets/stubDomain.h"
#include "stubs/rulesets/stubDomainProperty.h"
#include "stubs/rulesets/stubTransformsProperty.h"
void addToEntity(const Point3D & p, std::vector<double> & vd)
{
vd.resize(3);
vd[0] = p[0];
vd[1] = p[1];
vd[2] = p[2];
}
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
{
}
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)
{
}
void Location::addToEntity(const Atlas::Objects::Entity::RootEntity & ent) const
{
}
IdProperty::IdProperty(const std::string & data) : PropertyBase(per_ephem),
m_data(data)
{
}
int IdProperty::get(Atlas::Message::Element & e) const
{
return 0;
}
void IdProperty::set(const Atlas::Message::Element & e)
{
}
void IdProperty::add(const std::string & key,
Atlas::Message::MapType & ent) const
{
}
void IdProperty::add(const std::string & key,
const Atlas::Objects::Entity::RootEntity & ent) const
{
}
IdProperty * IdProperty::copy() const
{
return 0;
}
ContainsProperty::ContainsProperty(LocatedEntitySet & data) :
PropertyBase(per_ephem), m_data(data)
{
}
int ContainsProperty::get(Atlas::Message::Element & e) const
{
return 0;
}
void ContainsProperty::set(const Atlas::Message::Element & e)
{
}
void ContainsProperty::add(const std::string & s,
const Atlas::Objects::Entity::RootEntity & ent) const
{
}
ContainsProperty * ContainsProperty::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;
}
long integerId(const std::string & id)
{
long intId = strtol(id.c_str(), 0, 10);
if (intId == 0 && id != "0") {
intId = -1L;
}
return intId;
}
void log(LogLevel lvl, const std::string & msg)
{
}