view engine/core/model/structures/location.cpp @ 378:64738befdf3b

bringing in the changes from the build_system_rework branch in preparation for the 0.3.0 release. This commit will require the Jan2010 devkit. Clients will also need to be modified to the new way to import fife.
author vtchill@33b003aa-7bff-0310-803a-e67f0ece8222
date Mon, 11 Jan 2010 23:34:52 +0000
parents 90005975cdbb
children
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/***************************************************************************
 *   Copyright (C) 2005-2008 by the FIFE team                              *
 *   http://www.fifengine.de                                               *
 *   This file is part of FIFE.                                            *
 *                                                                         *
 *   FIFE is free software; you can redistribute it and/or                 *
 *   modify it under the terms of the GNU Lesser General Public            *
 *   License as published by the Free Software Foundation; either          *
 *   version 2.1 of the License, or (at your option) any later version.    *
 *                                                                         *
 *   This library 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     *
 *   Lesser General Public License for more details.                       *
 *                                                                         *
 *   You should have received a copy of the GNU Lesser General Public      *
 *   License along with this library; if not, write to the                 *
 *   Free Software Foundation, Inc.,                                       *
 *   51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA          *
 ***************************************************************************/

// Standard C++ library includes

// 3rd party library includes
#include <SDL.h>

// FIFE includes
// These includes are split up in two parts, separated by one empty line
// First block: files included from the FIFE root src directory
// Second block: files included from the same folder
#include "util/base/exception.h"
#include "util/structures/purge.h"
#include "model/metamodel/grids/cellgrid.h"

#include "layer.h"
#include "instance.h"

namespace FIFE {
	static std::string INVALID_LAYER_SET = "Cannot set layer coordinates, given layer is not initialized properly";
	static std::string INVALID_LAYER_GET = "Cannot get layer coordinates, layer is not initialized properly";
	
	Location::Location() {
		reset();
	}

	Location::Location(const Location& loc) {
		reset();
		m_layer = loc.m_layer;
		m_exact_layer_coords = loc.m_exact_layer_coords;
	}
	
	Location::Location(Layer* layer) {
		reset();
		m_layer = layer;
	}
	
	Location::~Location() {
		reset();
	}
	
	void Location::reset() {
		m_exact_layer_coords.x = 0;
		m_exact_layer_coords.y = 0;
		m_layer = NULL;
	}
	
	Location& Location::operator=(const Location& rhs) {
		m_layer = rhs.m_layer;
		m_exact_layer_coords.x = rhs.m_exact_layer_coords.x;
		m_exact_layer_coords.y = rhs.m_exact_layer_coords.y;
		return *this;
	}
	
	Map* Location::getMap() const {
		if (!m_layer) {
			return NULL;
		}
		return m_layer->getMap();
	}
		
	void Location::setLayer(Layer* layer) {
		m_layer = layer;
	}
	
	Layer* Location::getLayer() const {
		return m_layer;
	}
	
	void Location::setExactLayerCoordinates(const ExactModelCoordinate& coordinates) {
		if (!isValid()) {
			throw NotSet(INVALID_LAYER_SET);
		}
		m_exact_layer_coords = coordinates;
	}
	
	void Location::setLayerCoordinates(const ModelCoordinate& coordinates) {
		setExactLayerCoordinates(intPt2doublePt(coordinates));
	}
	
	void Location::setMapCoordinates(const ExactModelCoordinate& coordinates) {
		if (!isValid()) {
			throw NotSet(INVALID_LAYER_SET);
		}
		m_exact_layer_coords = m_layer->getCellGrid()->toExactLayerCoordinates(coordinates);
	}
	
	ExactModelCoordinate& Location::getExactLayerCoordinatesRef() {
		return m_exact_layer_coords;
	}
	
	ExactModelCoordinate Location::getExactLayerCoordinates() const {
		return m_exact_layer_coords;
	}
	
	ModelCoordinate Location::getLayerCoordinates() const {
		return getLayerCoordinates(m_layer);
	}
	
	ExactModelCoordinate Location::getMapCoordinates() const {
		return m_layer->getCellGrid()->toMapCoordinates(m_exact_layer_coords);
	}
	
	bool Location::isValid() const {
		return isValid(m_layer);
	}
	
	bool Location::isValid(const Layer* layer) const {
		return (layer && layer->getCellGrid());
	}
	
	ExactModelCoordinate Location::getExactLayerCoordinates(const Layer* layer) const {
		return m_exact_layer_coords;
	}
	
	ModelCoordinate Location::getLayerCoordinates(const Layer* layer) const {
		if (!isValid(layer)) {
			throw NotSet(INVALID_LAYER_GET);
		}
		CellGrid* cg1 = m_layer->getCellGrid();
		CellGrid* cg2 = layer->getCellGrid();
		return cg2->toLayerCoordinates(cg1->toMapCoordinates(m_exact_layer_coords));
	}
	
	double Location::getCellOffsetDistance() const {
		const ExactModelCoordinate& pt  = m_exact_layer_coords;
		double dx = pt.x - static_cast<double>(static_cast<int>(pt.x));
		double dy = pt.y - static_cast<double>(static_cast<int>(pt.y));
		return sqrt(dx*dx + dy*dy);
	}
	
	std::ostream& operator<<(std::ostream& os, const Location& l) {
		ExactModelCoordinate p = l.getExactLayerCoordinates();
		return os << "x=" << p.x << ", y=" << p.y;
	}
	
	double Location::getMapDistanceTo(const Location& location) const{
		ExactModelCoordinate current = getMapCoordinates();
		ExactModelCoordinate target = location.getMapCoordinates();
		
		double rx = current.x - target.x;
		double ry = current.y - target.y;
		double rz = current.z - target.z;
		
		return sqrt(rx*rx + ry*ry + rz*rz);
	}

	double Location::getLayerDistanceTo(const Location& location) const{
		ModelCoordinate current = getLayerCoordinates();
		ModelCoordinate target = location.getLayerCoordinates(m_layer);
		
		double rx = current.x - target.x;
		double ry = current.y - target.y;
		double rz = current.z - target.z;
		
		return sqrt(rx*rx + ry*ry + rz*rz);
	}	
}