mirror of
https://github.com/sojamo/controlp5
synced 2024-11-16 03:07:56 +01:00
562 lines
16 KiB
Java
Executable File
562 lines
16 KiB
Java
Executable File
package main.java.src2.main.java.controlP5.controlP5;
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/**
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* controlP5 is a processing gui library.
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*
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* 2006-2015 by Andreas Schlegel
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public License
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* as published by the Free Software Foundation; either version 2.1
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* of the License, or (at your option) any later version.
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General
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* Public License along with this library; if not, write to the
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* Free Software Foundation, Inc., 59 Temple Place, Suite 330,
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* Boston, MA 02111-1307 USA
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*
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* @author Andreas Schlegel (http://www.sojamo.de)
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* @modified ##date##
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* @version ##version##
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*
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*/
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import java.util.Iterator;
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import java.util.LinkedHashMap;
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import processing.core.PApplet;
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import processing.core.PGraphics;
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/**
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* Use charts to display float array data as line chart, yet experimental, but see the
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* ControlP5chart example for more details.
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*
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* @example controllers/ControlP5chart
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*/
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public class Chart extends Controller< Chart > {
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public final static int LINE = 0;
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public final static int BAR = 1;
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public final static int BAR_CENTERED = 2;
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public final static int HISTOGRAM = 3;
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public final static int PIE = 4;
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public final static int AREA = 5;
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protected final LinkedHashMap< String , ChartDataSet > _myDataSet;
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protected float resolution = 1;
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protected float strokeWeight = 1;
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protected float _myMin = 0;
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protected float _myMax = 1;
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/**
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* Convenience constructor to extend Chart.
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*
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* @example use/ControlP5extendController
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* @param theControlP5
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* @param theName
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*/
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public Chart( ControlP5 theControlP5 , String theName ) {
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this( theControlP5 , theControlP5.getDefaultTab( ) , theName , 0 , 0 , 200 , 100 );
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theControlP5.register( theControlP5.papplet , theName , this );
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}
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protected Chart( ControlP5 theControlP5 , ControllerGroup< ? > theParent , String theName , float theX , float theY , int theWidth , int theHeight ) {
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super( theControlP5 , theParent , theName , theX , theY , theWidth , theHeight );
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setRange( 0 , theHeight );
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_myDataSet = new LinkedHashMap< String , ChartDataSet >( );
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getCaptionLabel( ).align( LEFT, BOTTOM_OUTSIDE ).paddingX = 0;
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}
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public Chart setRange( float theMin , float theMax ) {
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_myMin = theMin;
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_myMax = theMax;
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return this;
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}
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public Chart setColors( String theSetIndex , int ... theColors ) {
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getDataSet( ).get( theSetIndex ).setColors( theColors );
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return this;
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}
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public Chart addData( ChartData theItem ) {
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return addData( getFirstDataSetIndex( ) , theItem );
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}
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private String getFirstDataSetIndex( ) {
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return getDataSet( ).keySet( ).iterator( ).next( );
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}
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private String getLastDataSetIndex( ) {
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Iterator< String > it = getDataSet( ).keySet( ).iterator( );
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String last = null;
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while ( it.hasNext( ) ) {
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last = it.next( );
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}
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return last;
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}
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public Chart addData( String theSetIndex , ChartData theItem ) {
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getDataSet( theSetIndex ).add( theItem );
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return this;
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}
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public Chart addData( float theValue ) {
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ChartData cdi = new ChartData( theValue );
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getDataSet( getFirstDataSetIndex( ) ).add( cdi );
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return this;
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}
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public Chart addData( String theSetIndex , float theValue ) {
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ChartData cdi = new ChartData( theValue );
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getDataSet( theSetIndex ).add( cdi );
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return this;
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}
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public Chart addData( ChartDataSet theChartData , float theValue ) {
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ChartData cdi = new ChartData( theValue );
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theChartData.add( cdi );
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return this;
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}
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// array operations see syntax
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// http://www.w3schools.com/jsref/jsref_obj_array.asp
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/**
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* adds a new float at the beginning of the data set.
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*/
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public Chart unshift( float theValue ) {
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return unshift( getFirstDataSetIndex( ) , theValue );
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}
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public Chart unshift( String theSetIndex , float theValue ) {
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if ( getDataSet( theSetIndex ).size( ) > ( getWidth() / resolution ) ) {
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removeLast( theSetIndex );
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}
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return addFirst( theSetIndex , theValue );
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}
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public Chart push( float theValue ) {
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return push( getFirstDataSetIndex( ) , theValue );
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}
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public Chart push( String theSetIndex , float theValue ) {
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if ( getDataSet( theSetIndex ).size( ) > ( getWidth() / resolution ) ) {
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removeFirst( theSetIndex );
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}
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return addLast( theSetIndex , theValue );
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}
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public Chart addFirst( float theValue ) {
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return addFirst( getFirstDataSetIndex( ) , theValue );
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}
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public Chart addFirst( String theSetIndex , float theValue ) {
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ChartData cdi = new ChartData( theValue );
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getDataSet( theSetIndex ).add( 0 , cdi );
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return this;
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}
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public Chart addLast( float theValue ) {
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return addLast( getFirstDataSetIndex( ) , theValue );
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}
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public Chart addLast( String theSetIndex , float theValue ) {
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ChartData cdi = new ChartData( theValue );
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getDataSet( theSetIndex ).add( cdi );
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return this;
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}
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public Chart removeLast( ) {
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return removeLast( getFirstDataSetIndex( ) );
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}
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public Chart removeLast( String theSetIndex ) {
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return removeData( theSetIndex , getDataSet( theSetIndex ).size( ) - 1 );
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}
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public Chart removeFirst( ) {
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return removeFirst( getFirstDataSetIndex( ) );
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}
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public Chart removeFirst( String theSetIndex ) {
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return removeData( theSetIndex , 0 );
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}
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public Chart removeData( ChartData theItem ) {
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removeData( getFirstDataSetIndex( ) , theItem );
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return this;
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}
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public Chart removeData( String theSetIndex , ChartData theItem ) {
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getDataSet( theSetIndex ).remove( theItem );
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return this;
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}
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public Chart removeData( int theItemIndex ) {
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removeData( getFirstDataSetIndex( ) , theItemIndex );
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return this;
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}
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public Chart removeData( String theSetIndex , int theItemIndex ) {
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if ( getDataSet( theSetIndex ).size( ) < 1 ) {
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return this;
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}
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getDataSet( theSetIndex ).remove( theItemIndex );
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return this;
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}
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public Chart setData( int theItemIndex , ChartData theItem ) {
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getDataSet( getFirstDataSetIndex( ) ).set( theItemIndex , theItem );
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return this;
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}
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public Chart setData( String theSetItem , int theItemIndex , ChartData theItem ) {
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getDataSet( theSetItem ).set( theItemIndex , theItem );
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return this;
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}
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public Chart addDataSet( String theName ) {
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getDataSet( ).put( theName , new ChartDataSet( theName ) );
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return this;
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}
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public Chart setDataSet( ChartDataSet theItems ) {
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setDataSet( getFirstDataSetIndex( ) , theItems );
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return this;
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}
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public Chart setDataSet( String theSetIndex , ChartDataSet theChartData ) {
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getDataSet( ).put( theSetIndex , theChartData );
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return this;
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}
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public Chart removeDataSet( String theIndex ) {
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getDataSet( ).remove( theIndex );
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return this;
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}
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public Chart setData( float ... theValues ) {
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setData( getFirstDataSetIndex( ) , theValues );
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return this;
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}
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public Chart setData( String theSetIndex , float ... theValues ) {
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if ( getDataSet( ).get( theSetIndex ).size( ) != theValues.length ) {
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getDataSet( ).get( theSetIndex ).clear( );
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for ( int i = 0 ; i < theValues.length ; i++ ) {
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getDataSet( ).get( theSetIndex ).add( new ChartData( 0 ) );
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}
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}
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int n = 0;
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resolution = ( float ) getWidth() / ( getDataSet( ).get( theSetIndex ).size( ) - 1 );
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for ( float f : theValues ) {
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getDataSet( ).get( theSetIndex ).get( n++ ).setValue( f );
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}
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return this;
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}
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public Chart updateData( float ... theValues ) {
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return setData( theValues );
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}
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public Chart updateData( String theSetIndex , float ... theValues ) {
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return setData( theSetIndex , theValues );
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}
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public LinkedHashMap< String , ChartDataSet > getDataSet( ) {
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return _myDataSet;
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}
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public ChartDataSet getDataSet( String theIndex ) {
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return getDataSet( ).get( theIndex );
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}
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public float[] getValuesFrom( String theIndex ) {
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return getDataSet( theIndex ).getValues( );
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}
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public ChartData getData( String theIndex , int theItemIndex ) {
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return getDataSet( theIndex ).get( theItemIndex );
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}
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public int size( ) {
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return getDataSet( ).size( );
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}
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@Override
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public void onEnter( ) {
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}
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@Override
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public void onLeave( ) {
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}
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@Override
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public Chart setValue( float theValue ) {
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// TODO Auto-generated method stub
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return this;
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}
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public Chart setStrokeWeight( float theWeight ) {
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strokeWeight = theWeight;
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for ( ChartDataSet c : getDataSet( ).values( ) ) {
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c.setStrokeWeight( theWeight );
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}
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return this;
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}
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public float getStrokeWeight( ) {
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return strokeWeight;
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}
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/**
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* ?
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*
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* @param theValue
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* @return
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*/
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public Chart setResolution( int theValue ) {
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resolution = theValue;
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return this;
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}
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public int getResolution( ) {
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return ( int ) resolution;
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}
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/**
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* @exclude
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*/
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@Override
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@ControlP5.Invisible
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public Chart updateDisplayMode( int theMode ) {
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return updateViewMode( theMode );
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}
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/**
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* @exclude
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*/
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@ControlP5.Invisible
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public Chart updateViewMode( int theMode ) {
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_myDisplayMode = theMode;
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switch ( theMode ) {
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case ( DEFAULT ):
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_myControllerView = new ChartViewPie( );
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break;
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case ( IMAGE ):
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// _myDisplay = new ChartImageDisplay();
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break;
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case ( SPRITE ):
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// _myDisplay = new ChartSpriteDisplay();
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break;
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case ( CUSTOM ):
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default:
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break;
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}
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return this;
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}
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public class ChartViewBar implements ControllerView< Chart > {
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public void display( PGraphics theGraphics , Chart theController ) {
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theGraphics.pushStyle( );
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theGraphics.fill( getColor( ).getBackground( ) );
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theGraphics.rect( 0 , 0 , getWidth( ) , getHeight( ) );
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theGraphics.noStroke( );
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Iterator< String > it = getDataSet( ).keySet( ).iterator( );
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String index = null;
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float o = 0;
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while ( it.hasNext( ) ) {
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index = it.next( );
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float s = getDataSet( index ).size( );
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for ( int i = 0 ; i < s ; i++ ) {
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theGraphics.fill( getDataSet( index ).getColor( i ) );
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float ww = ( ( getWidth() / s ) );
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float hh = PApplet.map( getDataSet( index ).get( i ).getValue( ) , _myMin , _myMax , 0 , getHeight( ) );
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theGraphics.rect( o + i * ww , getHeight( ) , ( ww / getDataSet( ).size( ) ) , -PApplet.min( getHeight( ) , PApplet.max( 0 , hh ) ) );
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}
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o += ( ( getWidth() / s ) ) / getDataSet( ).size( );
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}
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theGraphics.popStyle( );
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}
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}
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public class ChartViewBarCentered implements ControllerView< Chart > {
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public void display( PGraphics theGraphics , Chart theController ) {
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theGraphics.pushStyle( );
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theGraphics.fill( getColor( ).getBackground( ) );
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theGraphics.rect( 0 , 0 , getWidth( ) , getHeight( ) );
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theGraphics.noStroke( );
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Iterator< String > it = getDataSet( ).keySet( ).iterator( );
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String index = null;
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float o = 0;
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int n = 4;
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int off = ( getDataSet( ).size( ) - 1 ) * n;
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while ( it.hasNext( ) ) {
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index = it.next( );
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int s = getDataSet( index ).size( );
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float step = ( float ) getWidth() / ( float ) ( s );
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float ww = step - ( getWidth() % step );
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ww -= 1;
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ww = PApplet.max( 1 , ww );
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for ( int i = 0 ; i < s ; i++ ) {
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theGraphics.fill( getDataSet( index ).getColor( i ) );
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ww = ( ( getWidth() / s ) * 0.5f );
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float hh = PApplet.map( getDataSet( index ).get( i ).getValue( ) , _myMin , _myMax , 0 , getHeight( ) );
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theGraphics.rect( -off / 2 + o + i * ( ( getWidth() / s ) ) + ww / 2 , getHeight( ) , ww , -PApplet.min( getHeight( ) , PApplet.max( 0 , hh ) ) );
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}
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o += n;
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}
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theGraphics.popStyle( );
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}
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}
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public class ChartViewLine implements ControllerView< Chart > {
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public void display( PGraphics theGraphics , Chart theController ) {
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theGraphics.pushStyle( );
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theGraphics.fill( getColor( ).getBackground( ) );
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theGraphics.rect( 0 , 0 , getWidth( ) , getHeight( ) );
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theGraphics.noFill( );
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Iterator< String > it = getDataSet( ).keySet( ).iterator( );
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String index = null;
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while ( it.hasNext( ) ) {
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index = it.next( );
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theGraphics.stroke( getDataSet( index ).getColor( 0 ) );
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theGraphics.strokeWeight( getDataSet( index ).getStrokeWeight( ) );
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theGraphics.beginShape( );
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float res = ( ( float ) getWidth( ) ) / ( getDataSet( index ).size( ) - 1 );
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for ( int i = 0 ; i < getDataSet( index ).size( ) ; i++ ) {
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float hh = PApplet.map( getDataSet( index ).get( i ).getValue( ) , _myMin , _myMax , getHeight( ) , 0 );
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theGraphics.vertex( i * res , PApplet.min( getHeight( ) , PApplet.max( 0 , hh ) ) );
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}
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theGraphics.endShape( );
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}
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theGraphics.noStroke( );
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theGraphics.popStyle( );
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getCaptionLabel( ).draw( theGraphics , 0 , 0 , theController );
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}
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}
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public class ChartViewArea implements ControllerView< Chart > {
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public void display( PGraphics theGraphics , Chart theController ) {
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theGraphics.pushStyle( );
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theGraphics.fill( getColor( ).getBackground( ) );
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theGraphics.rect( 0 , 0 , getWidth( ) , getHeight( ) );
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theGraphics.noStroke( );
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Iterator< String > it = getDataSet( ).keySet( ).iterator( );
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String index = null;
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while ( it.hasNext( ) ) {
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index = it.next( );
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float res = ( ( float ) getWidth( ) ) / ( getDataSet( index ).size( ) - 1 );
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theGraphics.fill( getDataSet( index ).getColor( 0 ) );
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theGraphics.beginShape( );
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theGraphics.vertex( 0 , getHeight( ) );
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for ( int i = 0 ; i < getDataSet( index ).size( ) ; i++ ) {
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float hh = PApplet.map( getDataSet( index ).get( i ).getValue( ) , _myMin , _myMax , getHeight( ) , 0 );
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theGraphics.vertex( i * res , PApplet.min( getHeight( ) , PApplet.max( 0 , hh ) ) );
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}
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theGraphics.vertex( getWidth( ) , getHeight( ) );
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theGraphics.endShape( PApplet.CLOSE );
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}
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theGraphics.noStroke( );
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theGraphics.popStyle( );
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}
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}
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public class ChartViewPie implements ControllerView< Chart > {
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public void display( PGraphics theGraphics , Chart theController ) {
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theGraphics.pushStyle( );
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theGraphics.pushMatrix( );
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Iterator< String > it = getDataSet( ).keySet( ).iterator( );
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String index = null;
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while ( it.hasNext( ) ) {
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index = it.next( );
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float total = 0;
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for ( int i = 0 ; i < getDataSet( index ).size( ) ; i++ ) {
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total += getDataSet( index ).get( i ).getValue( );
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}
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float segment = TWO_PI / total;
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float angle = -HALF_PI;
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theGraphics.noStroke( );
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for ( int i = 0 ; i < getDataSet( index ).size( ) ; i++ ) {
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theGraphics.fill( getDataSet( index ).getColor( i ) );
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float nextAngle = angle + getDataSet( index ).get( i ).getValue( ) * segment;
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// a tiny offset to even out render artifacts when in smooth() mode.
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float a = PApplet.max( 0 , PApplet.map( getWidth( ) , 0 , 200 , 0.05f , 0.01f ) );
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theGraphics.arc( 0 , 0 , getWidth( ) , getHeight( ) , angle - a , nextAngle );
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angle = nextAngle;
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}
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theGraphics.translate( 0 , ( getHeight( ) + 10 ) );
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}
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theGraphics.popMatrix( );
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theGraphics.popStyle( );
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}
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}
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public Chart setView( int theType ) {
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switch ( theType ) {
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case ( PIE ):
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setView( new ChartViewPie( ) );
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break;
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|
case ( LINE ):
|
|
setView( new ChartViewLine( ) );
|
|
break;
|
|
case ( BAR ):
|
|
setView( new ChartViewBar( ) );
|
|
break;
|
|
case ( BAR_CENTERED ):
|
|
setView( new ChartViewBarCentered( ) );
|
|
break;
|
|
case ( AREA ):
|
|
setView( new ChartViewArea( ) );
|
|
break;
|
|
default:
|
|
System.out.println( "Sorry, this ChartView does not exist" );
|
|
break;
|
|
}
|
|
return this;
|
|
}
|
|
|
|
@Override
|
|
public String getInfo( ) {
|
|
return "type:\tChart\n" + super.toString( );
|
|
}
|
|
|
|
@Override
|
|
public String toString( ) {
|
|
return super.toString( ) + " [ " + getValue( ) + " ]" + " Chart " + "(" + this.getClass( ).getSuperclass( ) + ")";
|
|
}
|
|
|
|
}
|
|
|
|
/* NOTES what is the difference in meaning between chart and graph
|
|
* http://answers.yahoo.com/question/index?qid=20090101193325AA3mgMl
|
|
*
|
|
* more charts to implement: from https://vimeo.com/groups/oaod/videos/60013194 (44:40) scatter
|
|
* plot, star plot, histogram, dendrogram, box plot, physical map, tree, 2d 3d isosurfaces table,
|
|
* half matrix, graph, hierarchical pie, line graph, numeric matrix, heat map, permutation matrix
|
|
* bar graph, radial graph, */
|