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# JKQtPlotter
## Very simple line-graph
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This project (see `./test/simpletest/` ) simply creates a JKQtPlotter widget (as a new window) and adds a single line-graph (a sine-wave). Data is initialized from two QVector< double > objects.
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The QMake project looks like this (see [`jkqtplotter_simpletest.pro` ](https://github.com/jkriege2/JKQtPlotter/blob/master/test/simpletest/jkqtplotter_simpletest.pro ):
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```qmake
# source code for this simple demo
SOURCES = jkqtplotter_simpletest.cpp
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# configure Qt
CONFIG += qt
QT += core gui xml svg
greaterThan(QT_MAJOR_VERSION, 4): QT += widgets printsupport
# output executable name
TARGET = jkqtplotter_simpletest
# include JKQtPlotter source headers and link against library
DEPENDPATH += . ../../lib
INCLUDEPATH += ../../lib
CONFIG (debug, debug|release):LIBS += -L../../lib/debug -ljkqtplotterlib
CONFIG (release):LIBS += -L../../lib/release -ljkqtplotterlib
# here you can activate some debug options
#DEFINES += SHOW_JKQTPLOTTER_DEBUG
#DEFINES += JKQTBP_AUTOTIMER
```
Alternatively to linking agains a `libjkqtplotter` , you can also directy add the JKQtPlotter sources to the project:
```qmake
# source code for this simple demo
SOURCES = jkqtplotter_simpletest.cpp
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# configure Qt
CONFIG += qt
QT += core gui svg
greaterThan(QT_MAJOR_VERSION, 4): QT += widgets printsupport
# output executable name
TARGET = jkqtplotter_simpletest
# include JKQtPlotter source code
include(../../lib/jkqtplotter.pri)
```
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The soruce code of the main application is (see [`jkqtplotter_simpletest.cpp` ](https://github.com/jkriege2/JKQtPlotter/blob/master/test/simpletest/jkqtplotter_simpletest.cpp ):
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```c++
#include <QApplication>
#include "jkqtplotter/jkqtplotter.h"
int main(int argc, char* argv[])
{
QApplication app(argc, argv);
// 1. create a plotter window and get a pointer to the internal datastore
// (for convenience)
JKQtPlotter plot;
JKQTPdatastore* ds=plot.getDatastore();
// 2. now we create data for a simple plot (a sine curve)
QVector< double > X, Y;
const int Ndata=100;
for (int i=0; i< Ndata ; i + + ) {
const double x=double(i)/double(Ndata)*8.0*M_PI;
X< < x ;
Y< < sin ( x ) ;
}
// 3. make data available to JKQtPlotter by adding it to the internal
// datastore.
// Note: In this step the data is copied (of not specified otherwise), so
// you can reuse X and Y afterwards!
// The variables columnX and columnY will contain the internal column ID
// of the newlycreated columns with names "x" and "y" and the (copied)
// data from X and Y.
size_t columnX=ds->addCopiedColumn(X, "x");
size_t columnY=ds->addCopiedColumn(Y, "y");
// 4. create a graph in the plot, which plots the dataset X/Y:
JKQTPxyLineGraph* graph1=new JKQTPxyLineGraph(&plot);
graph1->set_xColumn(columnX);
graph1->set_yColumn(columnY);
graph1->set_title(QObject::tr("sine graph"));
// 5. add the graph to the plot, so it is actually displayed
plot.addGraph(graph1);
// 6. autoscale the plot so the graph is contained
plot.zoomToFit();
// show plotter and make it a decent size
plot.show();
plot.resize(600,400);
return app.exec();
}
```
The result looks like this:
![jkqtplotter_simpletest1 ](https://raw.githubusercontent.com/jkriege2/JKQtPlotter/master/screenshots/jkqtplotter_simpletest1.png )
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