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q3DMASC/q3DMASC.cpp
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Daniel Girardeau-Montaut aa961c7b79 Files updated
2018-10-22 19:01:30 +02:00

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//##########################################################################
//# #
//# CLOUDCOMPARE PLUGIN: q3DMASC #
//# #
//# 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; version 2 or later of the License. #
//# #
//# 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. #
//# #
//# COPYRIGHT: Dimitri Lague / CNRS / UEB #
//# #
//##########################################################################
#include "q3DMASC.h"
//local
#include "q3DMASCDisclaimerDialog.h"
//qCC_db
#include <ccPointCloud.h>
//Qt
#include <QtGui>
#include <QtCore>
#include <QApplication>
#include <QMessageBox>
#include <QStringList>
q3DMASCPlugin::q3DMASCPlugin(QObject* parent/*=0*/)
: QObject(parent)
, ccStdPluginInterface( ":/CC/plugin/q3DMASCPlugin/info.json" )
, m_classifyAction(0)
, m_trainAction(0)
{
}
void q3DMASCPlugin::onNewSelection(const ccHObject::Container& selectedEntities)
{
if (m_classifyAction)
{
//classification: only one point cloud
m_classifyAction->setEnabled(selectedEntities.size() == 1 && selectedEntities[0]->isA(CC_TYPES::POINT_CLOUD));
}
if (m_trainAction)
{
m_trainAction->setEnabled(m_app && m_app->dbRootObject() && m_app->dbRootObject()->getChildrenNumber() != 0); //need some loaded entities to train the classifier!
}
m_selectedEntities = selectedEntities;
}
QList<QAction*> q3DMASCPlugin::getActions()
{
QList<QAction*> group;
if (!m_trainAction)
{
m_trainAction = new QAction("Train classifier", this);
m_trainAction->setToolTip("Train classifier");
m_trainAction->setIcon(QIcon(QString::fromUtf8(":/CC/plugin/q3DMASCPlugin/iconCreate.png")));
connect(m_trainAction, SIGNAL(triggered()), this, SLOT(doTrainAction()));
}
group.push_back(m_trainAction);
if (!m_classifyAction)
{
m_classifyAction = new QAction("Classify", this);
m_classifyAction->setToolTip("Classify cloud");
m_classifyAction->setIcon(QIcon(QString::fromUtf8(":/CC/plugin/q3DMASCPlugin/iconClassify.png")));
connect(m_classifyAction, SIGNAL(triggered()), this, SLOT(doClassifyAction()));
}
group.push_back(m_classifyAction);
return group;
}
#include <opencv2/ml.hpp>
void q3DMASCPlugin::doClassifyAction()
{
if (!m_app)
{
assert(false);
return;
}
//disclaimer accepted?
if (!ShowClassifyDisclaimer(m_app))
{
return;
}
if (m_selectedEntities.empty() || !m_selectedEntities.front()->isA(CC_TYPES::POINT_CLOUD))
{
m_app->dispToConsole("Select one and only one point cloud!", ccMainAppInterface::ERR_CONSOLE_MESSAGE);
return;
}
ccPointCloud* cloud = static_cast<ccPointCloud*>(m_selectedEntities.front());
struct RTParams
{
int maxDepth = 25; //To be left as a parameter of the training plugin (default 25)
int minSampleCount = 1; //To be left as a parameter of the training plugin (default 1)
int maxCategories = 0; //Normally not important as theres no categorical variable
const bool calcVarImportance = true; //Must be true
int activeVarCount = 0; //USE 0 as the default parameter (works best)
int maxTreeCount = 100; //Left as a parameter of the training plugin (default: 100)
};
RTParams params;
unsigned sampleCount = cloud->size();
unsigned attributesPerSample = cloud->getNumberOfScalarFields();
//NUMBER_OF_TRAINING_SAMPLES = number of points
//ATTRIBUTES_PER_SAMPLE = number of scalar fields
cv::Mat training_data = cv::Mat(sampleCount, attributesPerSample, CV_32FC1);
cv::Mat train_labels = cv::Mat(attributesPerSample, 1, CV_32FC1);
cv::Ptr<cv::ml::RTrees> rtrees;
rtrees = cv::ml::RTrees::create();
rtrees->setMaxDepth(params.maxDepth);
rtrees->setMinSampleCount(params.minSampleCount);
rtrees->setCalculateVarImportance(params.calcVarImportance);
rtrees->setActiveVarCount(params.activeVarCount);
cv::TermCriteria terminationCriteria(cv::TermCriteria::MAX_ITER, params.maxTreeCount, std::numeric_limits<double>::epsilon());
rtrees->setTermCriteria(terminationCriteria);
//rtrees->setRegressionAccuracy(0);
//rtrees->setUseSurrogates(false);
//rtrees->setMaxCategories(params.maxCategories); //not important?
//rtrees->setPriors(cv::Mat());
rtrees->train(training_data, cv::ml::ROW_SAMPLE, train_labels);
}
//OpenCV
void q3DMASCPlugin::doTrainAction()
{
//disclaimer accepted?
if (!ShowTrainDisclaimer(m_app))
return;
//if (m_selectedEntities.size() != 2
// || !m_selectedEntities[0]->isA(CC_TYPES::POINT_CLOUD)
// || !m_selectedEntities[1]->isA(CC_TYPES::POINT_CLOUD))
//{
// m_app->dispToConsole("Select two point clouds!",ccMainAppInterface::ERR_CONSOLE_MESSAGE);
// return;
//}
//
//ccPointCloud* cloud1 = static_cast<ccPointCloud*>(m_selectedEntities[0]);
//ccPointCloud* cloud2 = static_cast<ccPointCloud*>(m_selectedEntities[1]);
}
void q3DMASCPlugin::registerCommands(ccCommandLineInterface* cmd)
{
if (!cmd)
{
assert(false);
return;
}
//cmd->registerCommand(ccCommandLineInterface::Command::Shared(new CommandCanupoClassif));
}