2019-06-21 04:24:47 +08:00
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/** \example parametriccurve.cpp
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2019-01-20 23:15:10 +08:00
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* Shows how to plot parametric curves from datapoints with JKQTPlotter
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2019-01-13 01:53:16 +08:00
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*
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2019-01-20 23:15:10 +08:00
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* \ref JKQTPlotterParametricCurves
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2019-01-13 01:53:16 +08:00
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*/
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2018-12-29 00:46:47 +08:00
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#include <QApplication>
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#include "jkqtplotter/jkqtplotter.h"
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2019-06-20 22:06:31 +08:00
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#include "jkqtplotter/graphs/jkqtpscatter.h"
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2018-12-29 00:46:47 +08:00
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int main(int argc, char* argv[])
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{
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QApplication app(argc, argv);
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// 1. create two plotter windows that share the same internal datastore (for convenience)
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2019-01-20 23:15:10 +08:00
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JKQTPlotter plot, plot2;
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2019-01-20 17:49:29 +08:00
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JKQTPDatastore* ds=plot.getDatastore();
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2018-12-29 00:46:47 +08:00
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plot2.useExternalDatastore(ds);
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// 2. now we create a vector of x- and y-values of the logarithmic spiral
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// in addition the radius is stored in column R
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QVector<double> X, Y, R;
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const int Ndata=500; // number of plot points in each curve
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2019-11-24 17:42:44 +08:00
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const double phiMax=4.0*JKQTPSTATISTICS_PI;
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2018-12-29 00:46:47 +08:00
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const double a=1;
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const double k=0.2;
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for (double phi=-phiMax; phi<=phiMax; phi+=phiMax/double(Ndata)) {
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const double x=a*exp(k*phi)*cos(phi);
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const double y=a*exp(k*phi)*sin(phi);
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X<<x;
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Y<<y;
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R<<sqrt(x*x+y*y);
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}
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// and copy it to the datastore
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size_t columnX=ds->addCopiedColumn(X, "x");
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size_t columnY=ds->addCopiedColumn(Y, "y");
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size_t columnR=ds->addCopiedColumn(R, "r");
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// 3. now we make several graphs. In each one, another property of the graph is controlled by
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// a datacolumn
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// 3.1 the basic graph
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2019-01-20 17:49:29 +08:00
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JKQTPXYLineGraph* graph1=new JKQTPXYLineGraph(&plot);
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2019-01-26 20:00:40 +08:00
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graph1->setXColumn(columnX);
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graph1->setYColumn(columnY);
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graph1->setDrawLine(true);
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2019-04-22 19:27:50 +08:00
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graph1->setSymbolType(JKQTPNoSymbol);
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2019-01-26 20:00:40 +08:00
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graph1->setTitle("one-colored spiral");
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2018-12-29 00:46:47 +08:00
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plot.addGraph(graph1);
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// 3.2 for graph2 is the same as graph 1, but in addition, the color of the lines
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// is set, based on the contents of column R, via the color-palette JKQTPMathImageMATLAB
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2019-01-20 17:49:29 +08:00
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JKQTPXYParametrizedScatterGraph* graph2=new JKQTPXYParametrizedScatterGraph(&plot2);
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2019-01-26 20:00:40 +08:00
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graph2->setXColumn(columnX);
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graph2->setYColumn(columnY);
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graph2->setColorColumn(columnR);
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2020-09-11 18:14:51 +08:00
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graph2->setColorPalette(JKQTPMathImageMATLAB);
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2019-04-22 19:27:50 +08:00
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graph2->setSymbolType(JKQTPNoSymbol);
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2019-01-26 20:00:40 +08:00
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graph2->setDrawLine(true);
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graph2->setTitle("colored spiral");
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graph2->getColorBarRightAxis()->setAxisLabel("color scale radius $r(\\phi)$");
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2018-12-29 00:46:47 +08:00
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plot2.addGraph(graph2);
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// 4. set the axis scale aspect ratios to 1,
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// autoscale the plot so the graph is contained
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// and format the coordinate system and key
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2019-01-26 03:16:04 +08:00
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plot.getPlotter()->setMaintainAspectRatio(true);
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plot.getPlotter()->setAspectRatio(1);
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plot.getXAxis()->setAxisLabel("x-axis");
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plot.getYAxis()->setAxisLabel("y-axis");
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2019-01-26 20:00:40 +08:00
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plot.getXAxis()->setDrawGrid(false);
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plot.getYAxis()->setDrawGrid(false);
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2018-12-29 00:46:47 +08:00
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plot.setXY(-15,15,-15,15);
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2019-01-26 03:16:04 +08:00
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plot2.getPlotter()->setMaintainAspectRatio(true);
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plot2.getPlotter()->setAspectRatio(1);
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plot2.getXAxis()->setAxisLabel("x-axis");
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plot2.getYAxis()->setAxisLabel("y-axis");
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2019-01-26 20:00:40 +08:00
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plot2.getXAxis()->setDrawGrid(false);
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plot2.getYAxis()->setDrawGrid(false);
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2018-12-29 00:46:47 +08:00
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plot2.setXY(-15,15,-15,15);
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// 5. show plotters and make them a decent size
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plot.show();
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plot.resize(600,600);
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plot2.show();
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plot2.resize(600,600);
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return app.exec();
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}
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