LibreVNA/Software/PC_Application/Traces/tracemarker.cpp
2020-10-20 17:03:49 +02:00

300 lines
8.2 KiB
C++

#include "tracemarker.h"
#include <QPainter>
#include "CustomWidgets/siunitedit.h"
#include <QHBoxLayout>
#include <QLabel>
#include <QSpinBox>
#include <QDebug>
#include "tracemarkermodel.h"
#include "unit.h"
TraceMarker::TraceMarker(TraceMarkerModel *model, int number)
: editingFrequeny(false),
model(model),
parentTrace(nullptr),
frequency(1000000000),
number(number),
data(0),
type(Type::Manual),
delta(nullptr)
{
}
TraceMarker::~TraceMarker()
{
if(parentTrace) {
parentTrace->removeMarker(this);
}
emit deleted(this);
}
void TraceMarker::assignTrace(Trace *t)
{
if(parentTrace) {
// remove connection from previous parent trace
parentTrace->removeMarker(this);
disconnect(parentTrace, &Trace::deleted, this, &TraceMarker::parentTraceDeleted);
disconnect(parentTrace, &Trace::dataChanged, this, &TraceMarker::traceDataChanged);
disconnect(parentTrace, &Trace::colorChanged, this, &TraceMarker::updateSymbol);
}
parentTrace = t;
connect(parentTrace, &Trace::deleted, this, &TraceMarker::parentTraceDeleted);
connect(parentTrace, &Trace::dataChanged, this, &TraceMarker::traceDataChanged);
connect(parentTrace, &Trace::colorChanged, this, &TraceMarker::updateSymbol);
constrainFrequency();
updateSymbol();
parentTrace->addMarker(this);
update();
}
Trace *TraceMarker::trace()
{
return parentTrace;
}
QString TraceMarker::readableData()
{
switch(type) {
case Type::Manual:
case Type::Maximum:
case Type::Minimum: {
auto db = 20*log10(abs(data));
auto phase = arg(data);
return QString::number(db, 'g', 4) + "db@" + QString::number(phase*180/M_PI, 'g', 4);
}
case Type::Delta:
if(!delta) {
return "Invalid delta marker";
} else {
// calculate difference between markers
auto freqDiff = frequency - delta->frequency;
auto valueDiff = data / delta->data;
auto db = 20*log10(abs(valueDiff));
auto phase = arg(valueDiff);
return Unit::ToString(freqDiff, "Hz", " kMG") + " / " + QString::number(db, 'g', 4) + "db@" + QString::number(phase*180/M_PI, 'g', 4);
}
}
}
void TraceMarker::setFrequency(double freq)
{
frequency = freq;
constrainFrequency();
}
void TraceMarker::parentTraceDeleted(Trace *t)
{
if(t == parentTrace) {
delete this;
}
}
void TraceMarker::traceDataChanged()
{
// some data of the parent trace changed, check if marker data also changed
auto tracedata = parentTrace->getData(frequency);
if(tracedata != data) {
data = tracedata;
update();
emit rawDataChanged();
}
}
void TraceMarker::updateSymbol()
{
constexpr int width = 15, height = 15;
symbol = QPixmap(width, height);
symbol.fill(Qt::transparent);
QPainter p(&symbol);
p.setRenderHint(QPainter::Antialiasing);
QPointF points[] = {QPointF(0,0),QPointF(width,0),QPointF(width/2,height)};
auto traceColor = parentTrace->color();
p.setPen(traceColor);
p.setBrush(traceColor);
p.drawConvexPolygon(points, 3);
auto brightness = traceColor.redF() * 0.299 + traceColor.greenF() * 0.587 + traceColor.blueF() * 0.114;
p.setPen((brightness > 0.6) ? Qt::black : Qt::white);
p.drawText(QRectF(0,0,width, height*2.0/3.0), Qt::AlignCenter, QString::number(number));
emit symbolChanged(this);
}
void TraceMarker::constrainFrequency()
{
if(parentTrace && parentTrace->size() > 0) {
if(frequency > parentTrace->maxFreq()) {
frequency = parentTrace->maxFreq();
} else if(frequency < parentTrace->minFreq()) {
frequency = parentTrace->minFreq();
}
traceDataChanged();
}
}
void TraceMarker::assignDeltaMarker(TraceMarker *m)
{
if(delta) {
disconnect(delta, &TraceMarker::dataChanged, this, &TraceMarker::update);
}
delta = m;
if(delta && delta != this) {
// this marker has to be updated when the delta marker changes
connect(delta, &TraceMarker::rawDataChanged, this, &TraceMarker::update);
connect(delta, &TraceMarker::deleted, [=](){
delta = nullptr;
update();
});
}
}
void TraceMarker::setNumber(int value)
{
number = value;
updateSymbol();
}
QWidget *TraceMarker::getTypeEditor(QAbstractItemDelegate *delegate)
{
auto c = new QComboBox;
for(auto t : getTypes()) {
c->addItem(typeToString(t));
if(type == t) {
// select this item
c->setCurrentIndex(c->count() - 1);
}
}
if(type == Type::Delta) {
// add additional spinbox to choose corresponding delta marker
auto w = new QWidget;
auto layout = new QHBoxLayout;
layout->addWidget(c);
c->setSizePolicy(QSizePolicy::Expanding, QSizePolicy::Expanding);
layout->setContentsMargins(0,0,0,0);
layout->setMargin(0);
layout->setSpacing(0);
layout->addWidget(new QLabel("to"));
auto spinbox = new QSpinBox;
if(delta) {
spinbox->setValue(delta->number);
}
connect(spinbox, qOverload<int>(&QSpinBox::valueChanged), [=](int newval){
bool found = false;
for(auto m : model->getMarkers()) {
if(m->number == newval) {
assignDeltaMarker(m);
found = true;
break;
}
}
if(!found) {
assignDeltaMarker(nullptr);
}
update();
});
spinbox->setSizePolicy(QSizePolicy::Expanding, QSizePolicy::Expanding);
layout->addWidget(spinbox);
w->setLayout(layout);
c->setObjectName("Type");
if(delegate){
connect(c, qOverload<int>(&QComboBox::currentIndexChanged), [=](int) {
emit delegate->commitData(w);
});
}
return w;
} else {
// no delta marker, simply return the combobox
connect(c, qOverload<int>(&QComboBox::currentIndexChanged), [=](int) {
emit delegate->commitData(c);
});
return c;
}
}
void TraceMarker::updateTypeFromEditor(QWidget *w)
{
QComboBox *c;
if(type == Type::Delta) {
c = w->findChild<QComboBox*>("Type");
} else {
c = (QComboBox*) w;
}
for(auto t : getTypes()) {
if(c->currentText() == typeToString(t)) {
if(type != t) {
type = t;
if(type == Type::Delta && !delta) {
// invalid delta marker assigned, attempt to find a matching marker
for(int pass = 0;pass < 3;pass++) {
for(auto m : model->getMarkers()) {
if(pass == 0 && m->parentTrace != parentTrace) {
// ignore markers on different traces in first pass
continue;
}
if(pass <= 1 && m == this) {
// ignore itself on second pass
continue;
}
assignDeltaMarker(m);
break;
}
if(delta) {
break;
}
}
}
emit typeChanged(this);
update();
}
}
}
}
SIUnitEdit *TraceMarker::getSettingsEditor()
{
return new SIUnitEdit("Hz", " kMG");
}
void TraceMarker::update()
{
switch(type) {
case Type::Manual:
// nothing to do
break;
case Type::Maximum:
setFrequency(parentTrace->findExtremumFreq(true));
break;
case Type::Minimum:
setFrequency(parentTrace->findExtremumFreq(false));
break;
}
emit dataChanged(this);
}
Trace *TraceMarker::getTrace() const
{
return parentTrace;
}
int TraceMarker::getNumber() const
{
return number;
}
std::complex<double> TraceMarker::getData() const
{
return data;
}
QPixmap &TraceMarker::getSymbol()
{
return symbol;
}
double TraceMarker::getFrequency() const
{
return frequency;
}