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1
#include "SMScanner.h"
1
#include "SMScanner.h"
2
#include "ui_SMScanner.h"
2
#include "ui_SMScanner.h"
3
 
3
 
4
#include <QMetaObject>
4
#include <QMetaObject>
5
#include <QFileDialog>
5
#include <QFileDialog>
6
#include <QMessageBox>
6
#include <QMessageBox>
7
 
7
 
8
#include <pcl/io/pcd_io.h>
8
#include <pcl/io/pcd_io.h>
9
#include <pcl/io/ascii_io.h>
9
#include <pcl/io/ascii_io.h>
10
#include <pcl/io/ply_io.h>
10
#include <pcl/io/ply_io.h>
11
#include <pcl/io/png_io.h>
11
#include <pcl/io/png_io.h>
12
#include <pcl/io/vtk_io.h>
12
#include <pcl/io/vtk_io.h>
13
#include <vtkPolyDataWriter.h>
13
#include <vtkPolyDataWriter.h>
14
#include <pcl/conversions.h>
14
#include <pcl/conversions.h>
15
 
15
 
16
SMScanner::SMScanner(QWidget *parent) :QMainWindow(parent), ui(new Ui::SMScanner),
16
SMScanner::SMScanner(QWidget *parent) :QMainWindow(parent), ui(new Ui::SMScanner),
17
                                        calibrationReviewMode(false), captureReviewMode(false), lastCaptureId(-1){
17
                                        calibrationReviewMode(false), captureReviewMode(false), lastCaptureId(-1){
18
 
18
 
19
    // Register metatypes
19
    // Register metatypes
20
    qRegisterMetaType<cv::Mat>("cv::Mat");
20
    qRegisterMetaType<cv::Mat>("cv::Mat");
21
    qRegisterMetaType< std::vector<cv::Mat> >("std::vector<cv::Mat>");
21
    qRegisterMetaType< std::vector<cv::Mat> >("std::vector<cv::Mat>");
22
    qRegisterMetaType< std::vector<float> >("std::vector<float>");
22
    qRegisterMetaType< std::vector<float> >("std::vector<float>");
23
    qRegisterMetaType<SMCalibrationSet>("SMCalibrationSet");
23
    qRegisterMetaType<SMCalibrationSet>("SMCalibrationSet");
24
    qRegisterMetaType<SMCalibrationParameters>("SMCalibrationParameters");
24
    qRegisterMetaType<SMCalibrationParameters>("SMCalibrationParameters");
25
    qRegisterMetaTypeStreamOperators<SMCalibrationParameters>("SMCalibrationParameters");
25
    qRegisterMetaTypeStreamOperators<SMCalibrationParameters>("SMCalibrationParameters");
26
    qRegisterMetaType< std::vector<SMCalibrationSet> >("std::vector<SMCalibrationSet>");
26
    qRegisterMetaType< std::vector<SMCalibrationSet> >("std::vector<SMCalibrationSet>");
27
    qRegisterMetaType<SMFrameSequence>("SMFrameSequence");
27
    qRegisterMetaType<SMFrameSequence>("SMFrameSequence");
28
    qRegisterMetaType< std::vector<SMFrameSequence> >("std::vector<SMFrameSequence>");
28
    qRegisterMetaType< std::vector<SMFrameSequence> >("std::vector<SMFrameSequence>");
29
    qRegisterMetaType<pcl::PointCloud<pcl::PointXYZRGB>::Ptr>("pcl::PointCloud<pcl::PointXYZRGB>::Ptr");
29
    qRegisterMetaType<pcl::PointCloud<pcl::PointXYZRGB>::Ptr>("pcl::PointCloud<pcl::PointXYZRGB>::Ptr");
30
    qRegisterMetaType<SMPointCloud>("SMPointCloud");
30
    qRegisterMetaType<SMPointCloud>("SMPointCloud");
31
 
31
 
32
    // Setup ui (requires stream operators registered)
32
    // Setup ui (requires stream operators registered)
33
    ui->setupUi(this);
33
    ui->setupUi(this);
34
 
34
 
35
    // Restore geometry
35
    // Restore geometry
36
    this->restoreGeometry(settings.value("geometry/mainwindow").toByteArray());
36
    this->restoreGeometry(settings.value("geometry/mainwindow").toByteArray());
37
    this->restoreState(settings.value("state/mainwindow").toByteArray());
37
    this->restoreState(settings.value("state/mainwindow").toByteArray());
38
 
38
 
39
    // Set up threads
39
    // Set up threads
40
    captureWorker = new SMCaptureWorker;
40
    captureWorker = new SMCaptureWorker;
41
    captureWorkerThread = new QThread(this);
41
    captureWorkerThread = new QThread(this);
42
    captureWorkerThread->setObjectName("captureWorkerThread");
42
    captureWorkerThread->setObjectName("captureWorkerThread");
43
    captureWorker->moveToThread(captureWorkerThread);
43
    captureWorker->moveToThread(captureWorkerThread);
44
    captureWorkerThread->start();
44
    captureWorkerThread->start();
45
 
45
 
46
    // Connections
46
    // Connections
47
    connect(captureWorker, SIGNAL(newFrame(unsigned int, cv::Mat)), this, SLOT(onReceiveFrame(unsigned int, cv::Mat)));
47
    connect(captureWorker, SIGNAL(newFrame(unsigned int, cv::Mat)), this, SLOT(onReceiveFrame(unsigned int, cv::Mat)));
48
    connect(captureWorker, SIGNAL(newCalibrationSet(SMCalibrationSet)), this, SLOT(onReceiveCalibrationSet(SMCalibrationSet)));
48
    connect(captureWorker, SIGNAL(newCalibrationSet(SMCalibrationSet)), this, SLOT(onReceiveCalibrationSet(SMCalibrationSet)));
49
    connect(captureWorker, SIGNAL(newFrameSequence(SMFrameSequence)), this, SLOT(onReceiveFrameSequence(SMFrameSequence)));
49
    connect(captureWorker, SIGNAL(newFrameSequence(SMFrameSequence)), this, SLOT(onReceiveFrameSequence(SMFrameSequence)));
50
    connect(captureWorker, SIGNAL(rotatedTo(float)), this, SLOT(onReceiveRotatedTo(float)));
50
    connect(captureWorker, SIGNAL(rotatedTo(float)), this, SLOT(onReceiveRotatedTo(float)));
51
 
51
 
52
    // Start capturing
52
    // Start capturing
53
    QMetaObject::invokeMethod(captureWorker, "setup");
53
    QMetaObject::invokeMethod(captureWorker, "setup");
54
    QMetaObject::invokeMethod(captureWorker, "doWork");
54
    QMetaObject::invokeMethod(captureWorker, "doWork");
55
 
55
 
56
}
56
}
57
 
57
 
58
void SMScanner::onReceiveFrame(unsigned int camId, cv::Mat frame){
58
void SMScanner::onReceiveFrame(unsigned int camId, cv::Mat frame){
59
 
59
 
60
    if(camId == 0){
60
    if(camId == 0){
61
        if(!calibrationReviewMode)
61
        if(!calibrationReviewMode)
62
            ui->calibrationCamera0Widget->showImageCV(frame);
62
            ui->calibrationCamera0Widget->showImageCV(frame);
63
        if(!captureReviewMode)
63
        if(!captureReviewMode)
64
            ui->captureCamera0Widget->showImageCV(frame);
64
            ui->captureCamera0Widget->showImageCV(frame);
65
    } else if(camId == 1){
65
    } else if(camId == 1){
66
        if(!calibrationReviewMode)
66
        if(!calibrationReviewMode)
67
            ui->calibrationCamera1Widget->showImageCV(frame);
67
            ui->calibrationCamera1Widget->showImageCV(frame);
68
        if(!captureReviewMode)
68
        if(!captureReviewMode)
69
            ui->captureCamera1Widget->showImageCV(frame);
69
            ui->captureCamera1Widget->showImageCV(frame);
70
    }
70
    }
71
}
71
}
72
 
72
 
73
void SMScanner::on_actionPreferences_triggered(){
73
void SMScanner::on_actionPreferences_triggered(){
74
 
74
 
75
    connect(&preferenceDialog, SIGNAL(accepted()), this, SLOT(onPreferencesChanged()));
75
    connect(&preferenceDialog, SIGNAL(accepted()), this, SLOT(onPreferencesChanged()));
76
 
76
 
77
    preferenceDialog.show();
77
    preferenceDialog.show();
78
}
78
}
79
 
79
 
80
void SMScanner::onPreferencesChanged(){
80
void SMScanner::onPreferencesChanged(){
81
 
81
 
82
//    // Stop capturing thread
82
//    // Stop capturing thread
83
//    connect(captureWorker, SIGNAL(finished()), captureWorker, SLOT(deleteLater()));
83
//    connect(captureWorker, SIGNAL(finished()), captureWorker, SLOT(deleteLater()));
84
//    connect(captureWorker, SIGNAL(finished()), captureWorkerThread, SLOT(quit()));
84
//    connect(captureWorker, SIGNAL(finished()), captureWorkerThread, SLOT(quit()));
85
//    QMetaObject::invokeMethod(captureWorker, "stopWork");
85
//    QMetaObject::invokeMethod(captureWorker, "stopWork");
86
//    captureWorkerThread->quit();
86
//    captureWorkerThread->quit();
87
//    captureWorkerThread->wait();
87
//    captureWorkerThread->wait();
88
 
88
 
89
//    // Restart capture worker
89
//    // Restart capture worker
90
//    captureWorker = new SMCaptureWorker;
90
//    captureWorker = new SMCaptureWorker;
91
//    captureWorkerThread = new QThread(this);
91
//    captureWorkerThread = new QThread(this);
92
//    captureWorkerThread->setObjectName("captureWorkerThread");
92
//    captureWorkerThread->setObjectName("captureWorkerThread");
93
//    captureWorker->moveToThread(captureWorkerThread);
93
//    captureWorker->moveToThread(captureWorkerThread);
94
//    captureWorkerThread->start();
94
//    captureWorkerThread->start();
95
 
95
 
96
//    connect(captureWorker, SIGNAL(newFrame(unsigned int, cv::Mat)), this, SLOT(onReceiveFrame(unsigned int, cv::Mat)));
96
//    connect(captureWorker, SIGNAL(newFrame(unsigned int, cv::Mat)), this, SLOT(onReceiveFrame(unsigned int, cv::Mat)));
97
//    connect(captureWorker, SIGNAL(newCalibrationSet(SMCalibrationSet)), this, SLOT(onReceiveCalibrationSet(SMCalibrationSet)));
97
//    connect(captureWorker, SIGNAL(newCalibrationSet(SMCalibrationSet)), this, SLOT(onReceiveCalibrationSet(SMCalibrationSet)));
98
//    connect(captureWorker, SIGNAL(newFrameSequence(SMFrameSequence)), this, SLOT(onReceiveFrameSequence(SMFrameSequence)));
98
//    connect(captureWorker, SIGNAL(newFrameSequence(SMFrameSequence)), this, SLOT(onReceiveFrameSequence(SMFrameSequence)));
99
//    connect(captureWorker, SIGNAL(rotatedTo(float)), this, SLOT(onReceiveRotatedTo(float)));
99
//    connect(captureWorker, SIGNAL(rotatedTo(float)), this, SLOT(onReceiveRotatedTo(float)));
100
 
100
 
101
//    QMetaObject::invokeMethod(captureWorker, "setup");
101
//    QMetaObject::invokeMethod(captureWorker, "setup");
102
//    QMetaObject::invokeMethod(captureWorker, "doWork");
102
//    QMetaObject::invokeMethod(captureWorker, "doWork");
103
 
103
 
104
    QMessageBox::warning(this, "Information", "You must quit and restart the program for new settings to take effect!", QMessageBox::Ok);
104
    QMessageBox::warning(this, "Information", "You must quit and restart the program for new settings to take effect!", QMessageBox::Ok);
105
 
105
 
106
}
106
}
107
 
107
 
108
void SMScanner::closeEvent(QCloseEvent *event){
108
void SMScanner::closeEvent(QCloseEvent *event){
109
 
109
 
110
    // Stop capturing thread
110
    // Stop capturing thread
111
    connect(captureWorker, SIGNAL(finished()), captureWorker, SLOT(deleteLater()));
111
    connect(captureWorker, SIGNAL(finished()), captureWorker, SLOT(deleteLater()));
112
    connect(captureWorker, SIGNAL(finished()), captureWorkerThread, SLOT(quit()));
112
    connect(captureWorker, SIGNAL(finished()), captureWorkerThread, SLOT(quit()));
113
    QMetaObject::invokeMethod(captureWorker, "stopWork");
113
    QMetaObject::invokeMethod(captureWorker, "stopWork");
114
    captureWorkerThread->quit();
114
    captureWorkerThread->quit();
115
    captureWorkerThread->wait();
115
    captureWorkerThread->wait();
116
 
116
 
117
    // Save window geometry
117
    // Save window geometry
118
    settings.setValue("geometry/mainwindow", this->saveGeometry());
118
    settings.setValue("geometry/mainwindow", this->saveGeometry());
119
    settings.setValue("state/mainwindow", this->saveState());
119
    settings.setValue("state/mainwindow", this->saveState());
120
 
120
 
121
    event->accept();
121
    event->accept();
122
 
122
 
123
}
123
}
124
 
124
 
125
SMScanner::~SMScanner(){
125
SMScanner::~SMScanner(){
126
    delete ui;
126
    delete ui;
127
}
127
}
128
 
128
 
129
void SMScanner::on_singleCalibrationButton_clicked(){
129
void SMScanner::on_singleCalibrationButton_clicked(){
130
 
130
 
131
    // If in review mode, go back to aquisition mode
131
    // If in review mode, go back to aquisition mode
132
    if(calibrationReviewMode){
132
    if(calibrationReviewMode){
133
        ui->calibrationListWidget->clearSelection();
133
        ui->calibrationListWidget->clearSelection();
134
        ui->singleCalibrationButton->setText("Single Aquisition");
134
        ui->singleCalibrationButton->setText("Single Aquisition");
135
        ui->batchCalibrationButton->setText("Batch Aquisition");
135
        ui->batchCalibrationButton->setText("Batch Aquisition");
136
        calibrationReviewMode = false;
136
        calibrationReviewMode = false;
137
        return;
137
        return;
138
    }
138
    }
139
 
139
 
140
    QMetaObject::invokeMethod(captureWorker, "acquireCalibrationSet", Q_ARG(float, -1.0));
140
    QMetaObject::invokeMethod(captureWorker, "acquireCalibrationSet", Q_ARG(float, -1.0));
141
 
141
 
142
}
142
}
143
 
143
 
144
 
144
 
145
void SMScanner::on_batchCalibrationButton_clicked(){
145
void SMScanner::on_batchCalibrationButton_clicked(){
146
 
146
 
147
    // If in review mode, go back to aquisition mode
147
    // If in review mode, go back to aquisition mode
148
    if(calibrationReviewMode){
148
    if(calibrationReviewMode){
149
        ui->calibrationListWidget->clearSelection();
149
        ui->calibrationListWidget->clearSelection();
150
        ui->singleCalibrationButton->setText("Single Aquisition");
150
        ui->singleCalibrationButton->setText("Single Aquisition");
151
        ui->batchCalibrationButton->setText("Batch Aquisition");
151
        ui->batchCalibrationButton->setText("Batch Aquisition");
152
        calibrationReviewMode = false;
152
        calibrationReviewMode = false;
153
        return;
153
        return;
154
    }
154
    }
155
 
155
 
156
    // Construct vector of angles
156
    // Construct vector of angles
157
    int angleStart = ui->calibrationBatchStartSpinBox->value();
157
    int angleStart = ui->calibrationBatchStartSpinBox->value();
158
    int angleEnd = ui->calibrationBatchEndSpinBox->value();
158
    int angleEnd = ui->calibrationBatchEndSpinBox->value();
159
    int angleStep = ui->calibrationBatchStepSpinBox->value();
159
    int angleStep = ui->calibrationBatchStepSpinBox->value();
160
 
160
 
161
    if(angleStart > angleEnd)
161
    if(angleStart > angleEnd)
162
        angleEnd += 360;
162
        angleEnd += 360;
163
 
163
 
164
    std::vector<float> angles;
164
    std::vector<float> angles;
165
    for(int i=angleStart; i<=angleEnd; i+=angleStep)
165
    for(int i=angleStart; i<=angleEnd; i+=angleStep)
166
        angles.push_back(i % 360);
166
        angles.push_back(i % 360);
167
 
167
 
168
    QMetaObject::invokeMethod(captureWorker, "acquireCalibrationSets", Q_ARG(std::vector<float>, angles));
168
    QMetaObject::invokeMethod(captureWorker, "acquireCalibrationSets", Q_ARG(std::vector<float>, angles));
169
 
169
 
170
    std::cout << "Aquiring sets at ";
170
    std::cout << "Aquiring sets at ";
171
    for(unsigned int i=0; i<angles.size(); i++)
171
    for(unsigned int i=0; i<angles.size(); i++)
172
        std::cout << angles[i] << " ";
172
        std::cout << angles[i] << " ";
173
    std::cout << " degrees" <<std::endl;
173
    std::cout << " degrees" <<std::endl;
174
}
174
}
175
 
175
 
176
 
176
 
177
void SMScanner::on_calibrationRotationDial_sliderReleased(){
177
void SMScanner::on_calibrationRotationDial_sliderReleased(){
178
 
178
 
179
    float angle = ui->calibrationRotationDial->value();
179
    float angle = ui->calibrationRotationDial->value();
180
    std::cout << "Rotation stage target: " << angle << std::endl;
180
    std::cout << "Rotation stage target: " << angle << std::endl;
181
    QMetaObject::invokeMethod(captureWorker, "rotateTo", Q_ARG(float, angle));
181
    QMetaObject::invokeMethod(captureWorker, "rotateTo", Q_ARG(float, angle));
182
 
182
 
183
    ui->captureRotationDial->setValue(ui->calibrationRotationDial->value());
183
    ui->captureRotationDial->setValue(ui->calibrationRotationDial->value());
184
}
184
}
185
 
185
 
186
void SMScanner::onReceiveCalibrationSet(SMCalibrationSet calibrationSet){
186
void SMScanner::onReceiveCalibrationSet(SMCalibrationSet calibrationSet){
-
 
187
 
-
 
188
    int id = ui->calibrationListWidget->count();
-
 
189
    calibrationSet.id = id;
-
 
190
 
187
    calibrationData.push_back(calibrationSet);
191
    calibrationData.push_back(calibrationSet);
188
 
192
 
189
    // Add identifier to list
193
    // Add identifier to list
190
    QListWidgetItem* item = new QListWidgetItem(QString("Calibration Set %1 -- %2 deg").arg(ui->calibrationListWidget->count()).arg(calibrationSet.rotationAngle), ui->calibrationListWidget);
194
    QListWidgetItem* item = new QListWidgetItem(QString("Calibration Set %1 -- %2 deg").arg(id).arg(calibrationSet.rotationAngle), ui->calibrationListWidget);
191
    item->setFlags(item->flags() | Qt::ItemIsUserCheckable);
195
    item->setFlags(item->flags() | Qt::ItemIsUserCheckable);
192
    item->setCheckState(Qt::Checked);
196
    item->setCheckState(Qt::Checked);
193
    ui->calibrationListWidget->addItem(item);
197
    ui->calibrationListWidget->addItem(item);
194
 
198
 
195
    // Set enabled checkmark
199
    // Set enabled checkmark
196
    if(calibrationData.size() >= 2)
200
    if(calibrationData.size() >= 2)
197
        ui->calibrateButton->setEnabled(true);
201
        ui->calibrateButton->setEnabled(true);
198
}
202
}
199
 
203
 
200
void SMScanner::on_calibrateButton_clicked(){
204
void SMScanner::on_calibrateButton_clicked(){
201
 
205
 
202
    // disable ui elements
206
    // disable ui elements
203
    ui->calibrateButton->setEnabled(false);
207
    ui->calibrateButton->setEnabled(false);
204
    ui->calibrationFrame->setEnabled(false);
208
    ui->calibrationFrame->setEnabled(false);
205
 
209
 
206
    // set checked flags
210
    // set checked flags
207
    for(unsigned int i=0; i<calibrationData.size(); i++){
211
    for(unsigned int i=0; i<calibrationData.size(); i++){
208
        calibrationData[i].checked = (ui->calibrationListWidget->item(i)->checkState() == Qt::Checked);
212
        calibrationData[i].checked = (ui->calibrationListWidget->item(i)->checkState() == Qt::Checked);
209
    }
213
    }
210
 
214
 
211
//    SMCalibrationWorker calibrationWorker;
215
//    SMCalibrationWorker calibrationWorker;
212
//    calibrationWorker.performCalibration(calibrationData);
216
//    calibrationWorker.performCalibration(calibrationData);
213
 
217
 
214
    // Set up calibration thread
218
    // Set up calibration thread
215
    calibrationWorker = new SMCalibrationWorker;
219
    calibrationWorker = new SMCalibrationWorker;
216
    calibrationWorkerThread = new QThread(this);
220
    calibrationWorkerThread = new QThread(this);
217
    calibrationWorkerThread->setObjectName("calibrationWorkerThread");
221
    calibrationWorkerThread->setObjectName("calibrationWorkerThread");
218
    calibrationWorker->moveToThread(captureWorkerThread);
222
    calibrationWorker->moveToThread(calibrationWorkerThread);
219
    calibrationWorkerThread->start();
223
    calibrationWorkerThread->start();
220
 
224
 
221
    // Connections
225
    // Connections
222
    connect(calibrationWorker, SIGNAL(newSetProcessed(int)), this, SLOT(onCalibrationSetProcessed(int)));
226
    connect(calibrationWorker, SIGNAL(newSetProcessed(int)), this, SLOT(onCalibrationSetProcessed(int)));
223
    connect(calibrationWorker, SIGNAL(newFrameResult(int,int,bool,cv::Mat)), this, SLOT(onCalibrationFrameResult(int,int,bool,cv::Mat)));
227
    connect(calibrationWorker, SIGNAL(newFrameResult(int,int,bool,cv::Mat)), this, SLOT(onCalibrationFrameResult(int,int,bool,cv::Mat)));
224
    connect(calibrationWorker, SIGNAL(done()), this, SLOT(onCalibrationDone()));
228
    connect(calibrationWorker, SIGNAL(done()), this, SLOT(onCalibrationDone()));
225
    connect(calibrationWorker, SIGNAL(done()), ui->pointCloudWidget, SLOT(updateCalibrationParameters()));
229
    connect(calibrationWorker, SIGNAL(done()), ui->pointCloudWidget, SLOT(updateCalibrationParameters()));
226
    connect(calibrationWorker, SIGNAL(done()), calibrationWorkerThread, SLOT(quit()));
230
    connect(calibrationWorker, SIGNAL(done()), calibrationWorkerThread, SLOT(quit()));
227
    connect(calibrationWorker, SIGNAL(done()), calibrationWorker, SLOT(deleteLater()));
231
    connect(calibrationWorker, SIGNAL(done()), calibrationWorker, SLOT(deleteLater()));
228
 
232
 
229
    // Start calibration
233
    // Start calibration
230
    QMetaObject::invokeMethod(calibrationWorker, "performCalibration", Q_ARG(std::vector<SMCalibrationSet>, calibrationData));
234
    QMetaObject::invokeMethod(calibrationWorker, "performCalibration", Q_ARG(std::vector<SMCalibrationSet>, calibrationData));
231
 
235
 
232
}
236
}
233
 
237
 
234
 
238
 
235
 
239
 
236
void SMScanner::onCalibrationSetProcessed(int idx){
240
void SMScanner::onCalibrationSetProcessed(int idx){
237
 
241
 
238
    ui->calibrationListWidget->setCurrentRow(idx);
242
    ui->calibrationListWidget->setCurrentRow(idx);
239
}
243
}
240
 
244
 
241
void SMScanner::onCalibrationDone(){
245
void SMScanner::onCalibrationDone(){
242
 
246
 
243
    std::cout << "Calibration done!" << std::endl;
247
    std::cout << "Calibration done!" << std::endl;
244
    ui->calibrateButton->setEnabled(true);
248
    ui->calibrateButton->setEnabled(true);
245
    ui->calibrationFrame->setEnabled(true);
249
    ui->calibrationFrame->setEnabled(true);
246
 
250
 
247
}
251
}
248
 
252
 
249
void SMScanner::on_calibrationListWidget_itemSelectionChanged(){
253
void SMScanner::on_calibrationListWidget_itemSelectionChanged(){
250
 
254
 
251
    // if selection is just cleared
255
    // if selection is just cleared
252
    if(ui->calibrationListWidget->selectedItems().empty())
256
    if(ui->calibrationListWidget->selectedItems().empty())
253
        return;
257
        return;
254
 
258
 
255
    int currentRow = ui->calibrationListWidget->currentRow();
259
    int currentRow = ui->calibrationListWidget->currentRow();
256
 
260
 
257
    calibrationReviewMode = true;
261
    calibrationReviewMode = true;
258
    ui->singleCalibrationButton->setText("Live View");
262
    ui->singleCalibrationButton->setText("Live View");
259
    ui->batchCalibrationButton->setText("Live View");
263
    ui->batchCalibrationButton->setText("Live View");
260
 
264
 
261
    if(!calibrationData[currentRow].frame0Result.empty())
265
    if(!calibrationData[currentRow].frame0Result.empty())
262
        ui->calibrationCamera0Widget->showImageCV(calibrationData[currentRow].frame0Result);
266
        ui->calibrationCamera0Widget->showImageCV(calibrationData[currentRow].frame0Result);
263
    else
267
    else
264
        ui->calibrationCamera0Widget->showImageCV(calibrationData[currentRow].frame0);
268
        ui->calibrationCamera0Widget->showImageCV(calibrationData[currentRow].frame0);
265
 
269
 
266
    if(!calibrationData[currentRow].frame1Result.empty())
270
    if(!calibrationData[currentRow].frame1Result.empty())
267
        ui->calibrationCamera1Widget->showImageCV(calibrationData[currentRow].frame1Result);
271
        ui->calibrationCamera1Widget->showImageCV(calibrationData[currentRow].frame1Result);
268
    else
272
    else
269
        ui->calibrationCamera1Widget->showImageCV(calibrationData[currentRow].frame1);
273
        ui->calibrationCamera1Widget->showImageCV(calibrationData[currentRow].frame1);
270
 
274
 
271
//     std::cout << "on_calibrationListWidget_itemSelectionChanged" << std::endl;
275
//     std::cout << "on_calibrationListWidget_itemSelectionChanged" << std::endl;
272
}
276
}
273
 
277
 
274
void SMScanner::onCalibrationFrameResult(int idx, int camID, bool success, cv::Mat result){
278
void SMScanner::onCalibrationFrameResult(int idx, int camID, bool success, cv::Mat result){
275
 
279
 
276
//    std::cout << "onCalibrationFrameResult " << idx << camID << std::endl;
280
//    std::cout << "onCalibrationFrameResult " << idx << camID << std::endl;
277
 
281
 
278
    if(!success)
282
    if(!success)
279
        ui->calibrationListWidget->item(idx)->setCheckState(Qt::Unchecked);
283
        ui->calibrationListWidget->item(idx)->setCheckState(Qt::Unchecked);
280
    else {
284
    else {
281
        if(camID == 0)
285
        if(camID == 0)
282
            calibrationData[idx].frame0Result = result;
286
            calibrationData[idx].frame0Result = result;
283
        else if(camID == 1)
287
        else if(camID == 1)
284
            calibrationData[idx].frame1Result = result;
288
            calibrationData[idx].frame1Result = result;
285
    }
289
    }
286
 
290
 
287
}
291
}
288
 
292
 
289
void SMScanner::on_singleCaptureButton_clicked(){
293
void SMScanner::on_singleCaptureButton_clicked(){
290
 
294
 
291
    // If in review mode, go back to aquisition mode
295
    // If in review mode, go back to aquisition mode
292
    if(captureReviewMode){
296
    if(captureReviewMode){
293
        ui->captureTreeWidget->clearSelection();
297
        ui->captureTreeWidget->clearSelection();
294
        ui->singleCaptureButton->setText("Single Aquisition");
298
        ui->singleCaptureButton->setText("Single Aquisition");
295
        ui->batchCaptureButton->setText("Batch Aquisition");
299
        ui->batchCaptureButton->setText("Batch Aquisition");
296
        captureReviewMode = false;
300
        captureReviewMode = false;
297
        return;
301
        return;
298
    }
302
    }
299
 
303
 
300
    QMetaObject::invokeMethod(captureWorker, "acquireFrameSequence", Q_ARG(float, -1.0));
304
    QMetaObject::invokeMethod(captureWorker, "acquireFrameSequence", Q_ARG(float, -1.0));
301
 
305
 
302
}
306
}
303
 
307
 
304
 
308
 
305
void SMScanner::on_batchCaptureButton_clicked(){
309
void SMScanner::on_batchCaptureButton_clicked(){
306
 
310
 
307
    // If in review mode, go back to aquisition mode
311
    // If in review mode, go back to aquisition mode
308
    if(captureReviewMode){
312
    if(captureReviewMode){
309
        ui->captureTreeWidget->clearSelection();
313
        ui->captureTreeWidget->clearSelection();
310
        ui->singleCaptureButton->setText("Single Aquisition");
314
        ui->singleCaptureButton->setText("Single Aquisition");
311
        ui->batchCaptureButton->setText("Batch Aquisition");
315
        ui->batchCaptureButton->setText("Batch Aquisition");
312
        captureReviewMode = false;
316
        captureReviewMode = false;
313
        return;
317
        return;
314
    }
318
    }
315
 
319
 
316
    // Construct vector of angles
320
    // Construct vector of angles
317
    int angleStart = ui->captureBatchStartSpinBox->value();
321
    int angleStart = ui->captureBatchStartSpinBox->value();
318
    int angleEnd = ui->captureBatchEndSpinBox->value();
322
    int angleEnd = ui->captureBatchEndSpinBox->value();
319
    int angleStep = ui->captureBatchStepSpinBox->value();
323
    int angleStep = ui->captureBatchStepSpinBox->value();
320
 
324
 
321
    if(angleStart > angleEnd)
325
    if(angleStart > angleEnd)
322
        angleEnd += 360;
326
        angleEnd += 360;
323
 
327
 
324
    std::vector<float> angles;
328
    std::vector<float> angles;
325
    for(int i=angleStart; i<=angleEnd; i+=angleStep)
329
    for(int i=angleStart; i<=angleEnd; i+=angleStep)
326
        angles.push_back(i % 360);
330
        angles.push_back(i % 360);
327
 
331
 
328
    std::cout << "Aquiring sequences at ";
332
    std::cout << "Aquiring sequences at ";
329
    for(unsigned int i=0; i<angles.size(); i++)
333
    for(unsigned int i=0; i<angles.size(); i++)
330
        std::cout << angles[i] << " ";
334
        std::cout << angles[i] << " ";
331
    std::cout << " degrees" <<std::endl;
335
    std::cout << " degrees" <<std::endl;
332
 
336
 
333
    QMetaObject::invokeMethod(captureWorker, "acquireFrameSequences", Q_ARG(std::vector<float>, angles));
337
    QMetaObject::invokeMethod(captureWorker, "acquireFrameSequences", Q_ARG(std::vector<float>, angles));
334
}
338
}
335
 
339
 
336
void SMScanner::on_captureRotationDial_sliderReleased(){
340
void SMScanner::on_captureRotationDial_sliderReleased(){
337
 
341
 
338
    float angle = ui->captureRotationDial->value();
342
    float angle = ui->captureRotationDial->value();
339
    std::cout << "Rotation stage target: " << angle << std::endl;
343
    std::cout << "Rotation stage target: " << angle << std::endl;
340
    QMetaObject::invokeMethod(captureWorker, "rotateTo", Q_ARG(float, angle));
344
    QMetaObject::invokeMethod(captureWorker, "rotateTo", Q_ARG(float, angle));
341
 
345
 
342
    ui->calibrationRotationDial->setValue(ui->captureRotationDial->value());
346
    ui->calibrationRotationDial->setValue(ui->captureRotationDial->value());
343
}
347
}
344
 
348
 
345
void SMScanner::onReceiveFrameSequence(SMFrameSequence frameSequence){
349
void SMScanner::onReceiveFrameSequence(SMFrameSequence frameSequence){
346
 
350
 
347
    int id = lastCaptureId + 1;
351
    int id = lastCaptureId + 1;
348
    lastCaptureId += 1;
352
    lastCaptureId += 1;
349
 
353
 
350
    frameSequence.id = id;
354
    frameSequence.id = id;
351
 
355
 
352
    captureData.push_back(frameSequence);
356
    captureData.push_back(frameSequence);
353
 
357
 
354
    // Add identifier to list
358
    // Add identifier to list
355
    QTreeWidgetItem* item = new QTreeWidgetItem(ui->captureTreeWidget);
359
    QTreeWidgetItem* item = new QTreeWidgetItem(ui->captureTreeWidget);
356
    item->setText(0, QString("Frame Sequence %1 -- %2 deg").arg(id).arg(frameSequence.rotationAngle));
360
    item->setText(0, QString("Frame Sequence %1 -- %2 deg").arg(id).arg(frameSequence.rotationAngle));
357
    item->setFlags(item->flags() | Qt::ItemIsUserCheckable);
361
    item->setFlags(item->flags() | Qt::ItemIsUserCheckable);
358
    item->setData(0, Qt::UserRole, QPoint(captureData.size()-1, -1));
362
    item->setData(0, Qt::UserRole, QPoint(captureData.size()-1, -1));
359
    item->setCheckState(0, Qt::Checked);
363
    item->setCheckState(0, Qt::Checked);
360
    //ui->captureTreeWidget->addItem(item);
364
    //ui->captureTreeWidget->addItem(item);
361
 
365
 
362
    for(unsigned int i=0; i<frameSequence.frames0.size(); i++){
366
    for(unsigned int i=0; i<frameSequence.frames0.size(); i++){
363
        QTreeWidgetItem* subItem = new QTreeWidgetItem(item);
367
        QTreeWidgetItem* subItem = new QTreeWidgetItem(item);
364
        subItem->setText(0, QString("frames %1").arg(i));
368
        subItem->setText(0, QString("frames %1").arg(i));
365
        subItem->setData(0, Qt::UserRole, QPoint(id, i));
369
        subItem->setData(0, Qt::UserRole, QPoint(id, i));
366
    }
370
    }
367
 
371
 
368
    ui->reconstructButton->setEnabled(true);
372
    ui->reconstructButton->setEnabled(true);
369
}
373
}
370
 
374
 
371
void SMScanner::on_captureTreeWidget_itemSelectionChanged(){
375
void SMScanner::on_captureTreeWidget_itemSelectionChanged(){
372
 
376
 
373
    // if selection is just cleared
377
    // if selection is just cleared
374
    if(ui->captureTreeWidget->selectedItems().empty())
378
    if(ui->captureTreeWidget->selectedItems().empty())
375
        return;
379
        return;
376
 
380
 
377
    QTreeWidgetItem *item = ui->captureTreeWidget->currentItem();
381
    QTreeWidgetItem *item = ui->captureTreeWidget->currentItem();
378
 
382
 
379
    captureReviewMode = true;
383
    captureReviewMode = true;
380
 
384
 
381
    ui->singleCaptureButton->setText("Live View");
385
    ui->singleCaptureButton->setText("Live View");
382
    ui->batchCaptureButton->setText("Live View");
386
    ui->batchCaptureButton->setText("Live View");
383
 
387
 
384
    QPoint idx = item->data(0, Qt::UserRole).toPoint();
388
    QPoint idx = item->data(0, Qt::UserRole).toPoint();
385
 
389
 
386
    if(idx.y() != -1){
390
    if(idx.y() != -1){
387
        ui->captureCamera0Widget->showImageCV(captureData[idx.x()].frames0[idx.y()]);
391
        ui->captureCamera0Widget->showImageCV(captureData[idx.x()].frames0[idx.y()]);
388
        ui->captureCamera1Widget->showImageCV(captureData[idx.x()].frames1[idx.y()]);
392
        ui->captureCamera1Widget->showImageCV(captureData[idx.x()].frames1[idx.y()]);
389
    }
393
    }
390
 
394
 
391
//     std::cout << "on_captureTreeWidget_itemSelectionChanged" << std::endl;
395
//     std::cout << "on_captureTreeWidget_itemSelectionChanged" << std::endl;
392
}
396
}
393
 
397
 
394
 
398
 
395
void SMScanner::onReceiveRotatedTo(float angle){
399
void SMScanner::onReceiveRotatedTo(float angle){
396
 
400
 
397
    // update ui with new position
401
    // update ui with new position
398
    ui->calibrationRotationDial->setValue(angle);
402
    ui->calibrationRotationDial->setValue(angle);
399
    ui->captureRotationDial->setValue(angle);
403
    ui->captureRotationDial->setValue(angle);
400
 
404
 
401
}
405
}
402
 
406
 
403
void SMScanner::on_actionExport_Sets_triggered(){
407
void SMScanner::on_actionExport_Sets_triggered(){
404
 
408
 
405
    cv::Mat frameBGR;
409
    cv::Mat frameBGR;
406
    QString dirName = QFileDialog::getExistingDirectory(this, "Export calibration sets", QString());
410
    QString dirName = QFileDialog::getExistingDirectory(this, "Export calibration sets", QString());
407
    for(unsigned int i=0; i<calibrationData.size(); i++){
411
    for(unsigned int i=0; i<calibrationData.size(); i++){
408
        QString fileName = QString("%1/frame0_%2.png").arg(dirName).arg(i);
412
        QString fileName = QString("%1/frame0_%2.png").arg(dirName).arg(i);
409
        // Convert Bayer to rgb (png needs BGR order)
413
        // Convert Bayer to rgb (png needs BGR order)
410
        cv::cvtColor(calibrationData[i].frame0, frameBGR, CV_BayerBG2BGR);
414
        cv::cvtColor(calibrationData[i].frame0, frameBGR, CV_BayerBG2BGR);
411
        cv::imwrite(fileName.toStdString(), frameBGR);
415
        cv::imwrite(fileName.toStdString(), frameBGR);
412
        fileName = QString("%1/frame1_%2.png").arg(dirName).arg(i);
416
        fileName = QString("%1/frame1_%2.png").arg(dirName).arg(i);
413
        // Convert Bayer to rgb (png needs BGR order)
417
        // Convert Bayer to rgb (png needs BGR order)
414
        cv::cvtColor(calibrationData[i].frame1, frameBGR, CV_BayerBG2BGR);
418
        cv::cvtColor(calibrationData[i].frame1, frameBGR, CV_BayerBG2BGR);
415
        cv::imwrite(fileName.toStdString(), frameBGR);
419
        cv::imwrite(fileName.toStdString(), frameBGR);
416
        // Necessary to prevent memory pileup?
420
        // Necessary to prevent memory pileup?
417
        QCoreApplication::processEvents();
421
        QCoreApplication::processEvents();
418
    }
422
    }
419
 
423
 
420
}
424
}
421
 
425
 
422
void SMScanner::on_actionExport_Sequences_triggered(){
426
void SMScanner::on_actionExport_Sequences_triggered(){
423
 
427
 
424
    cv::Mat frameBGR;
428
    cv::Mat frameBGR;
425
    QString dirName = QFileDialog::getExistingDirectory(this, "Export frame sequences", QString());
429
    QString dirName = QFileDialog::getExistingDirectory(this, "Export frame sequences", QString());
426
    for(unsigned int i=0; i<captureData.size(); i++){
430
    for(unsigned int i=0; i<captureData.size(); i++){
427
        QString seqDirName = QString("%1/sequence_%2").arg(dirName).arg(i);
431
        QString seqDirName = QString("%1/sequence_%2").arg(dirName).arg(i);
428
        if(!QDir().mkdir(seqDirName))
432
        if(!QDir().mkdir(seqDirName))
429
            std::cerr << "Could not create directory " << seqDirName.toStdString() << std::endl;
433
            std::cerr << "Could not create directory " << seqDirName.toStdString() << std::endl;
430
        for(unsigned int j=0; j<captureData[i].frames0.size(); j++){
434
        for(unsigned int j=0; j<captureData[i].frames0.size(); j++){
431
            QString fileName = QString("%1/frames0_%2.png").arg(seqDirName).arg(j);
435
            QString fileName = QString("%1/frames0_%2.png").arg(seqDirName).arg(j);
432
            // Convert Bayer to rgb (png needs BGR order)
436
            // Convert Bayer to rgb (png needs BGR order)
433
            cv::cvtColor(captureData[i].frames0[j], frameBGR, CV_BayerBG2BGR);
437
            cv::cvtColor(captureData[i].frames0[j], frameBGR, CV_BayerBG2BGR);
434
            cv::imwrite(fileName.toStdString(), frameBGR);
438
            cv::imwrite(fileName.toStdString(), frameBGR);
435
            // Necessary to prevent memory pileup?
439
            // Necessary to prevent memory pileup?
436
            QCoreApplication::processEvents();
440
            QCoreApplication::processEvents();
437
        }
441
        }
438
        for(unsigned int j=0; j<captureData[i].frames1.size(); j++){
442
        for(unsigned int j=0; j<captureData[i].frames1.size(); j++){
439
            QString fileName = QString("%1/frames1_%2.png").arg(seqDirName).arg(j);
443
            QString fileName = QString("%1/frames1_%2.png").arg(seqDirName).arg(j);
440
            // Convert Bayer to rgb (png needs BGR order)
444
            // Convert Bayer to rgb (png needs BGR order)
441
            cv::cvtColor(captureData[i].frames1[j], frameBGR, CV_BayerBG2BGR);
445
            cv::cvtColor(captureData[i].frames1[j], frameBGR, CV_BayerBG2BGR);
442
            cv::imwrite(fileName.toStdString(), frameBGR);
446
            cv::imwrite(fileName.toStdString(), frameBGR);
443
            // Necessary to prevent memory pileup?
447
            // Necessary to prevent memory pileup?
444
            QCoreApplication::processEvents();
448
            QCoreApplication::processEvents();
445
        }
449
        }
446
    }
450
    }
447
}
451
}
448
 
452
 
449
void SMScanner::on_actionExport_White_Frames_triggered(){
453
void SMScanner::on_actionExport_White_Frames_triggered(){
450
 
454
 
451
    cv::Mat frameBGR;
455
    cv::Mat frameBGR;
452
    QString dirName = QFileDialog::getExistingDirectory(this, "Export frame sequences", QString());
456
    QString dirName = QFileDialog::getExistingDirectory(this, "Export frame sequences", QString());
453
    for(unsigned int i=0; i<captureData.size(); i++){
457
    for(unsigned int i=0; i<captureData.size(); i++){
454
        QString seqDirName = QString("%1/sequence_%2").arg(dirName).arg(i);
458
        QString seqDirName = QString("%1/sequence_%2").arg(dirName).arg(i);
455
        if(!QDir().mkdir(seqDirName))
459
        if(!QDir().mkdir(seqDirName))
456
            std::cerr << "Could not create directory " << seqDirName.toStdString() << std::endl;
460
            std::cerr << "Could not create directory " << seqDirName.toStdString() << std::endl;
457
 
461
 
458
        QString fileName = QString("%1/frames0_0.png").arg(seqDirName);
462
        QString fileName = QString("%1/frames0_0.png").arg(seqDirName);
459
        // Convert Bayer to rgb (png needs BGR order)
463
        // Convert Bayer to rgb (png needs BGR order)
460
        cv::cvtColor(captureData[i].frames0[0], frameBGR, CV_BayerBG2BGR);
464
        cv::cvtColor(captureData[i].frames0[0], frameBGR, CV_BayerBG2BGR);
461
        cv::imwrite(fileName.toStdString(), frameBGR);
465
        cv::imwrite(fileName.toStdString(), frameBGR);
462
        // Necessary to prevent memory pileup?
466
        // Necessary to prevent memory pileup?
463
        QCoreApplication::processEvents();
467
        QCoreApplication::processEvents();
464
 
468
 
465
 
469
 
466
        fileName = QString("%1/frames1_0.png").arg(seqDirName);
470
        fileName = QString("%1/frames1_0.png").arg(seqDirName);
467
        // Convert Bayer to rgb (png needs BGR order)
471
        // Convert Bayer to rgb (png needs BGR order)
468
        cv::cvtColor(captureData[i].frames1[0], frameBGR, CV_BayerBG2BGR);
472
        cv::cvtColor(captureData[i].frames1[0], frameBGR, CV_BayerBG2BGR);
469
        cv::imwrite(fileName.toStdString(), frameBGR);
473
        cv::imwrite(fileName.toStdString(), frameBGR);
470
        // Necessary to prevent memory pileup?
474
        // Necessary to prevent memory pileup?
471
        QCoreApplication::processEvents();
475
        QCoreApplication::processEvents();
472
 
476
 
473
    }
477
    }
474
 
478
 
475
}
479
}
476
 
480
 
477
void SMScanner::on_reconstructButton_clicked(){
481
void SMScanner::on_reconstructButton_clicked(){
478
 
482
 
479
    // Set up reconstruction thread
483
    // Set up reconstruction thread
480
    reconstructionWorker = new SMReconstructionWorker;
484
    reconstructionWorker = new SMReconstructionWorker;
481
    reconstructionWorkerThread = new QThread(this);
485
    reconstructionWorkerThread = new QThread(this);
482
    reconstructionWorkerThread->setObjectName("reconstructionWorkerThread");
486
    reconstructionWorkerThread->setObjectName("reconstructionWorkerThread");
483
    reconstructionWorker->moveToThread(reconstructionWorkerThread);
487
    reconstructionWorker->moveToThread(reconstructionWorkerThread);
484
    reconstructionWorkerThread->start();
488
    reconstructionWorkerThread->start();
485
 
489
 
486
    // Connections
490
    // Connections
487
    connect(reconstructionWorker, SIGNAL(newPointCloud(SMPointCloud)), this, SLOT(onNewPointCloud(SMPointCloud)));
491
    connect(reconstructionWorker, SIGNAL(newPointCloud(SMPointCloud)), this, SLOT(onNewPointCloud(SMPointCloud)));
488
    connect(reconstructionWorker, SIGNAL(done()), reconstructionWorkerThread, SLOT(quit()));
492
    connect(reconstructionWorker, SIGNAL(done()), reconstructionWorkerThread, SLOT(quit()));
489
    connect(reconstructionWorker, SIGNAL(done()), reconstructionWorker, SLOT(deleteLater()));
493
    connect(reconstructionWorker, SIGNAL(done()), reconstructionWorker, SLOT(deleteLater()));
490
 
494
 
491
    // Start reconstructing
495
    // Start reconstructing
492
    QMetaObject::invokeMethod(reconstructionWorker, "setup");
496
    QMetaObject::invokeMethod(reconstructionWorker, "setup");
493
 
497
 
494
    for(unsigned int i=0; i<captureData.size(); i++){
498
    for(unsigned int i=0; i<captureData.size(); i++){
495
        if(!captureData[i].reconstructed & (ui->captureTreeWidget->topLevelItem(i)->checkState(0) == Qt::Checked))
499
        if(!captureData[i].reconstructed & (ui->captureTreeWidget->topLevelItem(i)->checkState(0) == Qt::Checked))
496
            QMetaObject::invokeMethod(reconstructionWorker, "reconstructPointCloud", Q_ARG(SMFrameSequence, captureData[i]));
500
            QMetaObject::invokeMethod(reconstructionWorker, "reconstructPointCloud", Q_ARG(SMFrameSequence, captureData[i]));
497
    }
501
    }
498
 
502
 
499
}
503
}
500
 
504
 
501
void SMScanner::onNewPointCloud(SMPointCloud smCloud){
505
void SMScanner::onNewPointCloud(SMPointCloud smCloud){
502
 
506
 
503
    int id = smCloud.id;
507
    int id = smCloud.id;
504
 
508
 
505
    for(int i=0; i<captureData.size(); i++){
509
    for(int i=0; i<captureData.size(); i++){
506
        if(captureData[i].id == id)
510
        if(captureData[i].id == id)
507
            captureData[i].reconstructed = true;
511
            captureData[i].reconstructed = true;
508
    }
512
    }
509
 
513
 
510
    pointCloudData.push_back(smCloud);
514
    pointCloudData.push_back(smCloud);
511
 
515
 
512
    // Add identifier to list
516
    // Add identifier to list
513
    QListWidgetItem* item = new QListWidgetItem(QString("Point Cloud %1 -- %2 deg").arg(id).arg(smCloud.rotationAngle), ui->pointCloudsListWidget);
517
    QListWidgetItem* item = new QListWidgetItem(QString("Point Cloud %1 -- %2 deg").arg(id).arg(smCloud.rotationAngle), ui->pointCloudsListWidget);
514
    item->setFlags(item->flags() | Qt::ItemIsUserCheckable);
518
    item->setFlags(item->flags() | Qt::ItemIsUserCheckable);
515
    item->setData(Qt::UserRole, QVariant(id));
519
    item->setData(Qt::UserRole, QVariant(id));
516
    item->setCheckState(Qt::Checked);
520
    item->setCheckState(Qt::Checked);
517
 
521
 
518
    ui->pointCloudsListWidget->addItem(item);
522
    ui->pointCloudsListWidget->addItem(item);
519
 
523
 
520
//    ui->pointCloudWidget->addPointCloud(smCloud, id);
524
//    ui->pointCloudWidget->addPointCloud(smCloud, id);
521
}
525
}
522
 
526
 
523
 
527
 
524
 
528
 
525
void SMScanner::on_actionExport_Point_Clouds_triggered(){
529
void SMScanner::on_actionExport_Point_Clouds_triggered(){
526
 
530
 
527
    QString directory = QFileDialog::getExistingDirectory(this, "Export Point Clouds", QString());
531
    QString directory = QFileDialog::getExistingDirectory(this, "Export Point Clouds", QString());
528
 
532
 
529
//    //  Non native file dialog
533
//    //  Non native file dialog
530
//    QFileDialog saveDirectoryDialog(this, "Export Point Clouds", QString(), "*.pcd;;*.ply;;*.vtk;;*.png;;*.txt");
534
//    QFileDialog saveDirectoryDialog(this, "Export Point Clouds", QString(), "*.pcd;;*.ply;;*.vtk;;*.png;;*.txt");
531
//    saveDirectoryDialog.setDefaultSuffix("ply");
535
//    saveDirectoryDialog.setDefaultSuffix("ply");
532
//    saveDirectoryDialog.setFileMode(QFileDialog::Directory);
536
//    saveDirectoryDialog.setFileMode(QFileDialog::Directory);
533
//    saveDirectoryDialog.exec();
537
//    saveDirectoryDialog.exec();
534
//    QString directory = saveDirectoryDialog.directory().path();
538
//    QString directory = saveDirectoryDialog.directory().path();
535
//    QString type = saveDirectoryDialog.selectedNameFilter();
539
//    QString type = saveDirectoryDialog.selectedNameFilter();
536
 
540
 
537
    // save point clouds in ply format
541
    // save point clouds in ply format
538
    for(unsigned int i=0; i<pointCloudData.size(); i++){
542
    for(unsigned int i=0; i<pointCloudData.size(); i++){
539
        QString fileName = QString("%1/pointcloud_%2.ply").arg(directory).arg(i);
543
        QString fileName = QString("%1/pointcloud_%2.ply").arg(directory).arg(i);
540
        pcl::PointCloud<pcl::PointXYZRGB>::Ptr pointCloudPCL(pointCloudData[i].pointCloud);
544
        pcl::PointCloud<pcl::PointXYZRGB>::Ptr pointCloudPCL(pointCloudData[i].pointCloud);
541
        //pcl::io::savePLYFileBinary(fileName.toStdString(), *pointCloudPCL);
545
        //pcl::io::savePLYFileBinary(fileName.toStdString(), *pointCloudPCL);
542
        pcl::PLYWriter w;
546
        pcl::PLYWriter w;
543
        // Write to ply in binary without camera
547
        // Write to ply in binary without camera
544
        w.write<pcl::PointXYZRGB> (fileName.toStdString(), *pointCloudPCL, true, false);
548
        w.write<pcl::PointXYZRGB> (fileName.toStdString(), *pointCloudPCL, true, false);
545
    }
549
    }
546
 
550
 
547
    // save meshlab aln project file
551
    // save meshlab aln project file
548
    std::ofstream s(QString("%1/alignment.aln").arg(directory).toLocal8Bit());
552
    std::ofstream s(QString("%1/alignment.aln").arg(directory).toLocal8Bit());
549
    s << pointCloudData.size() << std::endl;
553
    s << pointCloudData.size() << std::endl;
550
    for(unsigned int i=0; i<pointCloudData.size(); i++){
554
    for(unsigned int i=0; i<pointCloudData.size(); i++){
551
        QString fileName = QString("pointcloud_%1.ply").arg(i);
555
        QString fileName = QString("pointcloud_%1.ply").arg(i);
552
        s << fileName.toStdString() << std::endl << "#" << std::endl;
556
        s << fileName.toStdString() << std::endl << "#" << std::endl;
553
        cv::Mat Tr = cv::Mat::eye(4, 4, CV_32F);
557
        cv::Mat Tr = cv::Mat::eye(4, 4, CV_32F);
554
        cv::Mat(pointCloudData[i].R.t()).copyTo(Tr.colRange(0, 3).rowRange(0, 3));
558
        cv::Mat(pointCloudData[i].R.t()).copyTo(Tr.colRange(0, 3).rowRange(0, 3));
555
        cv::Mat(-pointCloudData[i].R.t()*pointCloudData[i].T).copyTo(Tr.col(3).rowRange(0, 3));
559
        cv::Mat(-pointCloudData[i].R.t()*pointCloudData[i].T).copyTo(Tr.col(3).rowRange(0, 3));
556
        for(int j=0; j<Tr.rows; j++){
560
        for(int j=0; j<Tr.rows; j++){
557
            for(int k=0; k<Tr.cols; k++){
561
            for(int k=0; k<Tr.cols; k++){
558
                s << Tr.at<float>(j,k) << " ";
562
                s << Tr.at<float>(j,k) << " ";
559
            }
563
            }
560
            s << std::endl;
564
            s << std::endl;
561
        }
565
        }
562
    }
566
    }
563
    s << "0" << std::flush;
567
    s << "0" << std::flush;
564
    s.close();
568
    s.close();
565
}
569
}
566
 
570
 
567
void SMScanner::on_pointCloudsListWidget_itemChanged(QListWidgetItem *item){
571
void SMScanner::on_pointCloudsListWidget_itemChanged(QListWidgetItem *item){
568
 
572
 
569
    int id = item->data(Qt::UserRole).toInt();
573
    int id = item->data(Qt::UserRole).toInt();
570
 
574
 
571
    if(item->checkState() == Qt::Checked)
575
    if(item->checkState() == Qt::Checked)
572
        ui->pointCloudWidget->addPointCloud(pointCloudData[id], id);
576
        ui->pointCloudWidget->addPointCloud(pointCloudData[id], id);
573
    else
577
    else
574
        ui->pointCloudWidget->removePointCloud(id);
578
        ui->pointCloudWidget->removePointCloud(id);
575
 
579
 
576
}
580
}
577
 
581
 
578
void SMScanner::on_actionExport_Parameters_triggered(){
582
void SMScanner::on_actionExport_Parameters_triggered(){
579
 
583
 
580
    QString fileName = QFileDialog::getSaveFileName(this, "Export calibration parameters", QString(), "*.xml");
584
    QString fileName = QFileDialog::getSaveFileName(this, "Export calibration parameters", QString(), "*.xml");
581
    QFileInfo info(fileName);
585
    QFileInfo info(fileName);
582
    QString type = info.suffix();
586
    QString type = info.suffix();
583
    if(type == ""){
587
    if(type == ""){
584
        fileName.append(".xml");
588
        fileName.append(".xml");
585
    }
589
    }
586
 
590
 
587
    SMCalibrationParameters calibration = settings.value("calibration/parameters").value<SMCalibrationParameters>();
591
    SMCalibrationParameters calibration = settings.value("calibration/parameters").value<SMCalibrationParameters>();
588
    calibration.exportToXML(fileName);
592
    calibration.exportToXML(fileName);
589
}
593
}
590
 
594
 
591
void SMScanner::on_actionClear_Sequences_triggered(){
595
void SMScanner::on_actionClear_Sequences_triggered(){
592
 
596
 
593
    int res = QMessageBox::question(this, "Clear Captured Sequences", "Clear all captured data?", QMessageBox::Ok, QMessageBox::Cancel);
597
    int res = QMessageBox::question(this, "Clear Captured Sequences", "Clear all captured data?", QMessageBox::Ok, QMessageBox::Cancel);
594
 
598
 
595
    if(res == QMessageBox::Ok){
599
    if(res == QMessageBox::Ok){
596
        captureData.clear();
600
        captureData.clear();
597
        ui->captureTreeWidget->clear();
601
        ui->captureTreeWidget->clear();
598
    }
602
    }
599
}
603
}
600
 
604
 
601
 
605
 
602
 
606