📄 combineddomaincategoryplot.java
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AxisSpace space = new AxisSpace();
PlotOrientation orientation = getOrientation();
// work out the space required by the domain axis...
AxisSpace fixed = getFixedDomainAxisSpace();
if (fixed != null) {
if (orientation == PlotOrientation.HORIZONTAL) {
space.setLeft(fixed.getLeft());
space.setRight(fixed.getRight());
}
else if (orientation == PlotOrientation.VERTICAL) {
space.setTop(fixed.getTop());
space.setBottom(fixed.getBottom());
}
}
else {
CategoryAxis categoryAxis = getDomainAxis();
RectangleEdge categoryEdge = Plot.resolveDomainAxisLocation(
getDomainAxisLocation(), orientation);
if (categoryAxis != null) {
space = categoryAxis.reserveSpace(g2, this, plotArea,
categoryEdge, space);
}
else {
if (getDrawSharedDomainAxis()) {
space = getDomainAxis().reserveSpace(g2, this, plotArea,
categoryEdge, space);
}
}
}
Rectangle2D adjustedPlotArea = space.shrink(plotArea, null);
// work out the maximum height or width of the non-shared axes...
int n = this.subplots.size();
this.subplotAreas = new Rectangle2D[n];
double x = adjustedPlotArea.getX();
double y = adjustedPlotArea.getY();
double usableSize = 0.0;
if (orientation == PlotOrientation.HORIZONTAL) {
usableSize = adjustedPlotArea.getWidth() - this.gap * (n - 1);
}
else if (orientation == PlotOrientation.VERTICAL) {
usableSize = adjustedPlotArea.getHeight() - this.gap * (n - 1);
}
for (int i = 0; i < n; i++) {
CategoryPlot plot = (CategoryPlot) this.subplots.get(i);
// calculate sub-plot area
if (orientation == PlotOrientation.HORIZONTAL) {
double w = usableSize * plot.getWeight() / this.totalWeight;
this.subplotAreas[i] = new Rectangle2D.Double(x, y, w,
adjustedPlotArea.getHeight());
x = x + w + this.gap;
}
else if (orientation == PlotOrientation.VERTICAL) {
double h = usableSize * plot.getWeight() / this.totalWeight;
this.subplotAreas[i] = new Rectangle2D.Double(x, y,
adjustedPlotArea.getWidth(), h);
y = y + h + this.gap;
}
AxisSpace subSpace = plot.calculateRangeAxisSpace(g2,
this.subplotAreas[i], null);
space.ensureAtLeast(subSpace);
}
return space;
}
/**
* Draws the plot on a Java 2D graphics device (such as the screen or a
* printer). Will perform all the placement calculations for each of the
* sub-plots and then tell these to draw themselves.
*
* @param g2 the graphics device.
* @param area the area within which the plot (including axis labels)
* should be drawn.
* @param anchor the anchor point (<code>null</code> permitted).
* @param parentState the state from the parent plot, if there is one.
* @param info collects information about the drawing (<code>null</code>
* permitted).
*/
public void draw(Graphics2D g2,
Rectangle2D area,
Point2D anchor,
PlotState parentState,
PlotRenderingInfo info) {
// set up info collection...
if (info != null) {
info.setPlotArea(area);
}
// adjust the drawing area for plot insets (if any)...
RectangleInsets insets = getInsets();
area.setRect(area.getX() + insets.getLeft(),
area.getY() + insets.getTop(),
area.getWidth() - insets.getLeft() - insets.getRight(),
area.getHeight() - insets.getTop() - insets.getBottom());
// calculate the data area...
setFixedRangeAxisSpaceForSubplots(null);
AxisSpace space = calculateAxisSpace(g2, area);
Rectangle2D dataArea = space.shrink(area, null);
// set the width and height of non-shared axis of all sub-plots
setFixedRangeAxisSpaceForSubplots(space);
// draw the shared axis
CategoryAxis axis = getDomainAxis();
RectangleEdge domainEdge = getDomainAxisEdge();
double cursor = RectangleEdge.coordinate(dataArea, domainEdge);
AxisState axisState = axis.draw(g2, cursor, area, dataArea,
domainEdge, info);
if (parentState == null) {
parentState = new PlotState();
}
parentState.getSharedAxisStates().put(axis, axisState);
// draw all the subplots
for (int i = 0; i < this.subplots.size(); i++) {
CategoryPlot plot = (CategoryPlot) this.subplots.get(i);
PlotRenderingInfo subplotInfo = null;
if (info != null) {
subplotInfo = new PlotRenderingInfo(info.getOwner());
info.addSubplotInfo(subplotInfo);
}
plot.draw(g2, this.subplotAreas[i], null, parentState, subplotInfo);
}
if (info != null) {
info.setDataArea(dataArea);
}
}
/**
* Sets the size (width or height, depending on the orientation of the
* plot) for the range axis of each subplot.
*
* @param space the space (<code>null</code> permitted).
*/
protected void setFixedRangeAxisSpaceForSubplots(AxisSpace space) {
Iterator iterator = this.subplots.iterator();
while (iterator.hasNext()) {
CategoryPlot plot = (CategoryPlot) iterator.next();
plot.setFixedRangeAxisSpace(space);
}
}
/**
* Sets the orientation of the plot (and all subplots).
*
* @param orientation the orientation (<code>null</code> not permitted).
*/
public void setOrientation(PlotOrientation orientation) {
super.setOrientation(orientation);
Iterator iterator = this.subplots.iterator();
while (iterator.hasNext()) {
CategoryPlot plot = (CategoryPlot) iterator.next();
plot.setOrientation(orientation);
}
}
/**
* Returns a collection of legend items for the plot.
*
* @return The legend items.
*/
public LegendItemCollection getLegendItems() {
LegendItemCollection result = getFixedLegendItems();
if (result == null) {
result = new LegendItemCollection();
if (this.subplots != null) {
Iterator iterator = this.subplots.iterator();
while (iterator.hasNext()) {
CategoryPlot plot = (CategoryPlot) iterator.next();
LegendItemCollection more = plot.getLegendItems();
result.addAll(more);
}
}
}
return result;
}
/**
* Returns an unmodifiable list of the categories contained in all the
* subplots.
*
* @return The list.
*/
public List getCategories() {
List result = new java.util.ArrayList();
if (this.subplots != null) {
Iterator iterator = this.subplots.iterator();
while (iterator.hasNext()) {
CategoryPlot plot = (CategoryPlot) iterator.next();
List more = plot.getCategories();
Iterator moreIterator = more.iterator();
while (moreIterator.hasNext()) {
Comparable category = (Comparable) moreIterator.next();
if (!result.contains(category)) {
result.add(category);
}
}
}
}
return Collections.unmodifiableList(result);
}
/**
* Overridden to return the categories in the subplots.
*
* @param axis ignored.
*
* @return A list of the categories in the subplots.
*
* @since 1.0.3
*/
public List getCategoriesForAxis(CategoryAxis axis) {
// FIXME: this code means that it is not possible to use more than
// one domain axis for the combined plots...
return getCategories();
}
/**
* Handles a 'click' on the plot.
*
* @param x x-coordinate of the click.
* @param y y-coordinate of the click.
* @param info information about the plot's dimensions.
*
*/
public void handleClick(int x, int y, PlotRenderingInfo info) {
Rectangle2D dataArea = info.getDataArea();
if (dataArea.contains(x, y)) {
for (int i = 0; i < this.subplots.size(); i++) {
CategoryPlot subplot = (CategoryPlot) this.subplots.get(i);
PlotRenderingInfo subplotInfo = info.getSubplotInfo(i);
subplot.handleClick(x, y, subplotInfo);
}
}
}
/**
* Receives a {@link PlotChangeEvent} and responds by notifying all
* listeners.
*
* @param event the event.
*/
public void plotChanged(PlotChangeEvent event) {
notifyListeners(event);
}
/**
* Tests the plot for equality with an arbitrary object.
*
* @param obj the object (<code>null</code> permitted).
*
* @return A boolean.
*/
public boolean equals(Object obj) {
if (obj == this) {
return true;
}
if (!(obj instanceof CombinedDomainCategoryPlot)) {
return false;
}
if (!super.equals(obj)) {
return false;
}
CombinedDomainCategoryPlot plot = (CombinedDomainCategoryPlot) obj;
if (!ObjectUtilities.equal(this.subplots, plot.subplots)) {
return false;
}
if (this.totalWeight != plot.totalWeight) {
return false;
}
if (this.gap != plot.gap) {
return false;
}
return true;
}
/**
* Returns a clone of the plot.
*
* @return A clone.
*
* @throws CloneNotSupportedException this class will not throw this
* exception, but subclasses (if any) might.
*/
public Object clone() throws CloneNotSupportedException {
CombinedDomainCategoryPlot result
= (CombinedDomainCategoryPlot) super.clone();
result.subplots = (List) ObjectUtilities.deepClone(this.subplots);
for (Iterator it = result.subplots.iterator(); it.hasNext();) {
Plot child = (Plot) it.next();
child.setParent(result);
}
return result;
}
}
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