236 lines
7.0 KiB
C++
236 lines
7.0 KiB
C++
/*
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----
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This file is part of SECONDO.
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Copyright (C) 2004, University in Hagen, Department of Computer Science,
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Database Systems for New Applications.
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SECONDO 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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SECONDO 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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You should have received a copy of the GNU General Public License
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along with SECONDO; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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----
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//paragraph [1] Title: [{\Large \bf \begin {center}] [\end {center}}]
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//[TOC] [\tableofcontents]
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//[_] [\_]
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[1] Implementation file for the class ~HobbyNaiveIntersectionAlgorithm~
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[TOC]
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1 Overview
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This file contains all methods required for the
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class ~HobbyNaiveIntersectionAlgorithm~.
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This file is not required for SECONDO. It is only used inside the test project.
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This class is a naive Hobby implementation.
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It uses the ~SimpleSweepIntersectionAlgorithm~ to find all intersections.
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Then tolerance square edges are constructed and a second sweep is performed.
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1 Includes
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*/
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#include <algorithm>
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#include "../Helper/LineIntersection.h"
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#include "HobbyNaiveIntersectionAlgorithm.h"
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using namespace std;
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namespace RobustPlaneSweep
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{
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/*
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1 Class ~HobbyNaiveIntersectionAlgorithm~
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1.1 ~DetermineIntersectionsInternal~
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*/
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void HobbyNaiveIntersectionAlgorithm::DetermineIntersectionsInternal()
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{
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_spacing = GetTransformation()->GetMinimalRoundedStep() / 2;
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SimpleSweepIntersectionAlgorithm::DetermineIntersectionsInternal();
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Hobby();
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}
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/*
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1.1 ~FindRoundedPoints~
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*/
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void HobbyNaiveIntersectionAlgorithm::FindRoundedPoints()
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{
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const InternalPointTransformation* transformation = GetTransformation();
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std::vector<InternalLineSegment*>::const_iterator begin = GetInputBegin();
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std::vector<InternalLineSegment*>::const_iterator end = GetInputEnd();
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for (std::vector<InternalLineSegment*>::const_iterator
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i = begin; i != end; ++i) {
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InternalLineSegment* segment = *i;
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InternalPoint roundedLeft =
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transformation->RoundPoint(segment->GetLeft());
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InternalPoint roundedRight =
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transformation->RoundPoint(segment->GetRight());
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_roundedPoints.insert(roundedLeft);
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_roundedPoints.insert(roundedRight);
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std::map<
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InternalIntersectionPoint,
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InternalAttribute,
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InternalIntersectionPointLess>*
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intersections = segment->GetIntersections();
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if (intersections != NULL) {
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for (std::map<
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InternalIntersectionPoint,
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InternalAttribute,
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InternalIntersectionPointLess>::const_iterator intersection =
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intersections->begin(); intersection != intersections->end();
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++intersection) {
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InternalPoint roundedIntersection =
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transformation->RoundPoint(intersection->first);
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_roundedPoints.insert(roundedIntersection);
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}
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}
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}
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}
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/*
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1.1 ~CreateEvents~
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*/
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void HobbyNaiveIntersectionAlgorithm::CreateEvents()
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{
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_events.reserve(_roundedPoints.size() + GetInputSize() * 2);
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for (unordered_set<
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InternalPoint,
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InternalPointComparer,
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InternalPointComparer>::const_iterator i = _roundedPoints.begin();
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i != _roundedPoints.end(); ++i) {
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_events.push_back(SweepEvent(i->GetX(), i->GetY()));
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}
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int segmentSpacing = _spacing + 1;
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std::vector<InternalLineSegment*>::const_iterator begin = GetInputBegin();
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std::vector<InternalLineSegment*>::const_iterator end = GetInputEnd();
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for (std::vector<InternalLineSegment*>::const_iterator i = begin;
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i != end; ++i) {
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InternalLineSegment* segment = *i;
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_events.push_back(SweepEvent(segment, segmentSpacing, true));
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_events.push_back(SweepEvent(segment, segmentSpacing, false));
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}
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sort(_events.begin(), _events.end());
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}
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/*
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1.1 ~Hobby~
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*/
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void HobbyNaiveIntersectionAlgorithm::Hobby()
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{
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FindRoundedPoints();
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CreateEvents();
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unordered_set<InternalLineSegment*> possibleSegments;
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for (vector<SweepEvent>::const_iterator e = _events.begin();
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e != _events.end(); ++e) {
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if (e->GetEventType() == EventType::TolaranceSquare) {
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int ppx0 = e->GetSquareX() - _spacing;
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int ppx1 = e->GetSquareX() + _spacing;
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int ppy0 = e->GetSquareY() - _spacing;
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int ppy1 = e->GetSquareY() + _spacing;
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InternalPoint tolPoints[4] = {
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InternalPoint(ppx0, ppy0),
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InternalPoint(ppx0, ppy1),
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InternalPoint(ppx1, ppy0),
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InternalPoint(ppx1, ppy1)
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};
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for (unordered_set<InternalLineSegment*>::const_iterator segment =
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possibleSegments.begin();
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segment != possibleSegments.end();
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++segment) {
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int count = 0;
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bool first = true;
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Rational minX(0);
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Rational minY(0);
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for (int i = 0; i < 4; ++i) {
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InternalIntersectionPoint i0, i1;
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int c =
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LineIntersection::GetIntersections((*segment)->GetLeft(),
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(*segment)->GetRight(),
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tolPoints[i > 0 ? i - 1 : 0],
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tolPoints[i < 3 ? i + 1 : 3],
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true,
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true,
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i0,
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i1);
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if (c >= 1) {
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minX = (first ? i0.GetX() : Rational::Min(minX, i0.GetX()));
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minY = (first ? i0.GetY() : Rational::Min(minY, i0.GetY()));
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first = false;
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if (c == 2) {
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minX = Rational::Min(minX, i1.GetX());
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minY = Rational::Min(minY, i1.GetY());
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}
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}
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count += c;
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}
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if (count >= 1) {
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if (minX == ppx1 || minY == ppy1) {
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continue;
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}
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if (!InternalPoint::
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IsEqual(GetTransformation()->RoundPoint((*segment)->GetLeft()),
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InternalPoint(e->GetSquareX(),
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e->GetSquareY()))
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&& !InternalPoint::
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IsEqual(GetTransformation()->RoundPoint((*segment)->GetRight()),
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InternalPoint(e->GetSquareX(), e->GetSquareY()))) {
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(*segment)->AddHobbyIntersection(e->GetSquareX(),
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e->GetSquareY(),
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_spacing);
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}
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}
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}
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} else if (e->GetEventType() == EventType::BeginSegment) {
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possibleSegments.insert(e->GetSegment());
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} else if (e->GetEventType() == EventType::EndSegment) {
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possibleSegments.erase(e->GetSegment());
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} else {
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throw new std::logic_error("not supported event type!");
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}
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}
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}
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}
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