gcc/libjava/java/awt/GridBagLayout.java
Graydon Hoare 86881a7b54 [multiple changes]
2004-03-12  Graydon Hoare  <graydon@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java: Clipping fixes.
	* javax/swing/JComponent.java (paint): Use persistent double buffer.
	* javax/swing/JList.java (ListListener): Revalidate on changes.
	* javax/swing/JScrollPane.java: Reimplement.
	* javax/swing/JViewport.java: Reimplement.
	* javax/swing/ScrollPaneLayout.java: Reimplement.
	* javax/swing/ViewportLayout.java: Tidy up.
	* javax/swing/plaf/basic/BasicButtonListener.java: Remove printlns.
	* javax/swing/plaf/basic/BasicScrollPaneUI.java: Reimplement.
	* javax/swing/plaf/basic/BasicSliderUI.java: Handle missing labels.
	* javax/swing/plaf/basic/BasicViewportUI.java: Implement in terms of
	backing store only.

2004-03-11  Thomas Fitzsimmons  <fitzsim@redhat.com>

	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkWindowPeer.c
	(window_wm_protocols_filter): New function.
	(window_focus_in_cb): Remove function.
	(window_focus_out_cb): Likewise.
	(window_focus_or_active_state_change_cb): New function.
	(create): Add filter that removes WM_TAKE_FOCUS client messages.
	(connectSignals): Don't attach handlers to focus-in-event or
	focus-out-event signals.  Handle notify signal.

2004-03-11  David Jee  <djee@redhat.com>

	* gnu/java/awt/peer/gtk/GtkCheckboxPeer.java
	(gtkSetLabel): New native method declaration.
	(setLabel): Use gtkSetLabel.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkCheckboxPeer.c
	(Java_gnu_java_awt_peer_gtk_GtkCheckboxPeer_gtkSetLabel): New method.

2004-03-10  Thomas Fitzsimmons  <fitzsim@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics.java (setColor): Default to
	black when color argument is null.

2004-03-10  Kim Ho  <kho@redhat.com>

	* java/awt/Container.java: Remove check
	for drag events.

2004-03-10  Kim Ho  <kho@redhat.com>

	* java/awt/Container.java: (visitChild):
	Remove candidate clip. Use the component
	clip to intersect.
	* gnu/java/awt/peer/gtk/GtkComponentPeer.java:
	(handleEvent): Use the PaintEvent's clip.

2004-03-10  Kim Ho  <kho@redhat.com>

	* gnu/java/awt/peer/gtk/GtkComponentPeer.java:
	(handleEvent): Don't set the clip for the
	Graphics object.

2004-03-09  Graydon Hoare  <graydon@redhat.com>

	* jni/gtk-peer/gnu_java_awt_peer_gtk_GdkGlyphVector.c:
	Fix double <-> fixed macros, reset font transform.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GdkClasspathFontPeerMetrics.c:
	Likewise.

2004-03-09�� Kim Ho  <kho@redhat.com>

	* java/awt/Container.java: (visitChild): Move
	the x and y coordinate of the component rectangle
	to correct position.
	(handleEvent): Forward drag events to the pressed
	component.
	* javax/swing/plaf/basic/BasicScrollBarUI.java:
	Fix comments.
	(ArrowButtonListener::mousePressed): Stop the
	existing timer.
	(mouseDragged): Implement.
	(TrackListener::mousePressed): Only react if
	the press doesn't occur on the thumb, otherwise
	just set the offset.
	(TrackListener::mouseReleased): Unset the isAdjusting
	value.
	(createIncreaseIcon): Switch icon.
	(createDecreaseIcon): Switch icon.
	(calculatePreferredSize): Use width.
	(getThumbBounds): Use the top as the lower value.
	(layoutVScrollBar): Switch the button locations.
	(paintIncreaseHighlight): Paint correct side of thumb.
	(paintDecreaseHighlight): ditto.
	(valueForYPosition): Use top as the lower value.
	* javax/swing/plaf/basic/BasicSliderUI.java:
	Fix comments.
	(mouseDragged): Implement.
	(mousePressed): Only react when the thumb isn't
	pressed, otherwise just set offset.
	(mouseReleased): Handle a release of the thumb.
	(scrollDueToClickInTrack): Stop the timer first.
	* javax/swing/JProgressBar.java:
	(setString): Fix change condition.
	* javax/swing/JSeparator.java:
	Remove println's.

2004-03-08  David Jee  <djee@redhat.com>

	* java/awt/image/AffineTransformOp.java:
	(filter): Use Graphics2D interface instead of directly using the
	GdkGraphics2D peer.

2004-03-05  David Jee  <djee@redhat.com>

	* gnu/java/awt/peer/gtk/GtkButtonPeer.java
	(handleEvent): Action events are generated upon MOUSE_RELEASED.
	* java/awt/Container.java
	(acquireComponentForMouseEvent): Fixed.
	(handleEvent): Fixed.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkEvents.c
	(state_to_awt_mods_with_button_states): New method.
	(pre_event_handler): Fixed mouse event generation.

2004-03-05  Olga Rodimina  <rodimina@redhat.com>

	gnu/java/awt/peer/gtk/GdkGraphics2D.java
	(GdkGraphics2D (BufferedImage)): Initialize
	pixmap associated with specified BufferedImage.
	(setPaint): Changed implementation of Texture
	Paint to use AffineTransformOp.
	* java/awt/image/AffineTransformOp.java
	(createCompatibleDestRaster): Throw RasterFormatException
	if resulting width or height of raster is 0.

2004-03-04  Olga Rodimina  <rodimina@redhat.com>

	* java/awt/image/AffineTransformOp.java:
	Removed unnecessary field interpolationType.
	Formatted some of the lines to be consistent with
	the GNU style.
	(AffineTransformOp): Create new RenderingHints
	containing specified interpolation type.
	(createCompatibleDestImage): Implemented.
	(createCompatibleDestRaster): Implemented.
	(filter): Implemented.
	(getBounds2D(BufferedImage)): Implemented.
	(getBounds2D(Raster)): Implemented.
	(getInterpolationType): Get interpolation value from
	rendering hints.

2004-03-04  David Jee  <djee@redhat.com>

	* gnu/java/awt/peer/gtk/GtkContainerPeer.java
	(setFont): Check if child peers are null.

2004-03-04  Graydon Hoare  <graydon@redhat.com>

	* testsuite/lib/libjava.exp (libjava_find_lib): Don't include
	.libs in -L option.
	(libjava_arguments): Add new libraries to argument list.

2004-03-04  Tom Tromey  <tromey@redhat.com>

	* Makefile.in: Rebuilt.
	* Makefile.am (toolexeclib_LTLIBRARIES): Added lib-java-awt.la,
	lib-javax-swing.la, lib-java-applet.la, lib-java-beans.la.
	(misc_java_source_files): New macro.
	(swing_java_source_files): Likewise.
	(awt_java_source_files): Pruned.
	(applet_java_source_files): New macro.
	(beans_java_source_files): Likewise.
	(lib_java_applet_la_SOURCES): Likewise.
	(lib_java_awt_la_SOURCES): Likewise.
	(lib_javax_swing_la_SOURCES): Likewise.
	(lib_java_beans_la_SOURCES): Likewise.
	(all_java_object_files): Likewise.
	(%.lo: %.java): Use all_java_object_files.
	(all_java_source_files): Added new _SOURCES.
	(ordinary_java_source_files): Removed awt_java_source_files.

2004-03-02  Olga Rodimina  <rodimina@redhat.com>

	* Makefile.am: Added java/awt/image/AffineTransformOp.java
	* Makefile.in: Re-generated.
	* java/awt/image/AffineTransformOp.java: New Class.

2004-03-01  Olga Rodimina  <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java
	(setPaint): Interpret correctly TexturePaint's
	anchor rectangle.
	(drawImage): Fixed scale factors of the affine
	transform.

2004-02-27  David Jee  <djee@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics.java
	(GdkGraphics(Component)): Inherit font from component.
	(drawString): Use font style.
	* gnu/java/awt/peer/gtk/GtkCheckboxPeer.java
	(gtkSetFont): New native method declaration.
	(setFont): New method.
	* gnu/java/awt/peer/gtk/GtkComponentPeer.java
	(gtkSetFont): New native method declaration.
	(setFont): Call new native method gtkSetFont.
	* gnu/java/awt/peer/gtk/GtkContainerPeer.java
	(setFont): For all child components who do not their fonts set,
        set their peers' fonts with this container's font.
	* gnu/java/awt/peer/gtk/GtkLabelPeer.java:
	Move all native method declarations to the top for readability.
	(gtkSetFont): New native method declaration.
	(setFont): New method.
	* java/awt/Component.java
	(setFont): Invalidate after setting the font.
	* java/awt/Container.java
	(invalidateTree): New method.
	(setFont): Invalidate the container tree after setting the font.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GdkGraphics.c
	(Java_gnu_java_awt_peer_gtk_GdkGraphics_drawString): Use font style.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkCheckboxPeer.c
	(Java_gnu_java_awt_peer_gtk_GtkCheckboxPeer_gtkSetFont): New method.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkComponentPeer.c
	(Java_gnu_java_awt_peer_gtk_GtkComponentPeer_gtkSetFont): New method.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkLabelPeer.c
	(Java_gnu_java_awt_peer_gtk_GtkLabelPeer_gtkSetFont): New method.

2004-02-27  Olga Rodimina <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java
	(updateBufferedImage): New helper function.
	Updates BufferedImage in memory if it was changed.
	(draw): changed to update BufferedImage in memory after
	this drawing operation
	(fill): Ditto.
	(draw3DRect): Ditto.
	(fill3DRect): Ditto.
	(clearRect): Ditto.
	(drawRaster): Ditto.
	(drawImage) : Ditto. Update only in case of GtkOffScreenImage with
	no affine transformation.
	(drawGlyphVector): Ditto.

2004-02-26  Olga Rodimina <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java
	(isBufferedImageGraphics): New Helper function.
	Returns true if this graphics2d can be used to draw
	into buffered image and false otherwise.
	(updateImagePixels): New Helper function.
	Updates pixels in the BufferedImage.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GdkGraphics2D.c
	(getImagePixels): New function. Returns pixels
	of the buffered image associated with
	this Graphics2D.

2004-02-26  David Jee  <djee@redhat.com>

	* java/awt/BorderLayout.java
	(layoutContainer): Fix width and height calculations to ensure
	that they're non-negative.
	* java/awt/Component.java
	(setBackground): If c is null, inherit from closest ancestor whose
	background color is set.

2004-02-26�� Kim Ho�� <kho@redhat.com>

	* Makefile.am: Add new files.
	* Makefile.in: Re-generate.
	* javax/swing/JProgressBar.java:
	(JProgressBar(int, int int)): Throw
	IllegalArgumentException if orientation is
	invalid.
	(JProgressBar(BoundedRangeModel)): Create
	ChangeListener and register it. UpdateUI.
	(getChangeListeners): Implement.
	(setModel): Reset ChangeListener.
	* javax/swing/JScrollBar.java: Implement.
	* javax/swing/JSeparator.java: Implement.
	* javax/swing/JSlider.java:
	(JSlider(int, int, int, int)): Throw
	IllegalArgumentException if orientation
	is invalid.
	(getChangeListeners): Fix method name.
	* javax/swing/SwingUtilities.java:
	(layoutCompoundLabel): If there is no text,
	set the text rectangle dimensions to 0.
	* javax/swing/plaf/basic/BasicButtonUI.java:
	(paint): If there is no text, don't paint it.
	* javax/swing/plaf/basic/BasicScrollBarUI.java:
	Implement.
	* javax/swing/plaf/basic/BasicSeparatorUI.java:
	Implement.
	* javax/swing/plaf/basic/BasicSliderUI.java:
	(propertyChange): If the model changes, change
	the listeners accordingly.

2004-02-25  Graydon Hoare  <graydon@redhat.com>

	* javax/swing/AbstractButton.java: Add "final" qualifiers.
	* javax/swing/JList.java: Reimplement.
	* javax/swing/DefaultListSelectionModel.java: Reimplement.
	* javax/swing/plaf/basic/BasicListUI.java: Reimplement.
	* javax/swing/plaf/basic/BasicLookAndFeel.java: Add "purple" values.
	* javax/swing/ListModel.java: Javadoc.
	* javax/swing/ListSelectionModel.java: Add missing methods.
	* javax/swing/AbstractListModel.java: Javadoc and corrections.
	* javax/swing/DefaultListModel.java: Javadoc and corrections.
	* javax/swing/ListModel.java: Javadoc and corrections.
	* javax/swing/DefaultListCellRenderer.java: Minor tidying.

2004-02-25  David Jee  <djee@redhat.com>

	* gnu/java/awt/peer/gtk/GtkFontPeer.java
	(GtkFontPeer): Change default size to 12.
	* gnu/java/awt/peer/gtk/GtkToolkit.java
	(getFontPeer): Change default size to 12.
	(getClasspathFontPeer): Likewise. Set default name to "Default".
	* java/awt/Font.java
	(Font(Map)): Call Font(String,Map).
	(Font(String,Map)): If attrs is null, initialize it as an empty
	HashMap, which will ensure that the Font will get default attributes.

2004-02-25  David Jee  <djee@redhat.com>

	* gnu/java/awt/peer/gtk/GtkFontPeer.java
	(GtkFontPeer(String,int)): Call the new constructor with size 1.
	(GtkFontPeer(String,int,int)): New constructor with size attribute.
	* gnu/java/awt/peer/gtk/GtkToolkit.java
	(getFontPeer(String,int)): Call the new overload method with size 1.
	(getFontPeer(String,int,int)): New method. Overloaded with size
	attribute.
	(getClasspathFontPeer): Set the size of the font.

2004-02-24  Olga Rodimina  <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java
	(bimage): New field.
	(GdkGraphics2D): New Constructor. Constructs Graphics
	object that can be used to draw into the Buffered Image.
	* gnu/java/awt/peer/gtk/GdkGraphicsEnvironment.java:
	(GdkGraphicsEnvironment): Fixed to include public
	keyword.
	(createGraphics): Implemented.
	* gnu/java/awt/peer/gtk/GtkToolkit.java
	(getLocalGraphicsEnvironment): Implemented.
	* java/awt/GraphicsEnvironment.java:
	(getLocalGraphicsEnvironment): Implemented.
	* java/awt/image/BufferedImage.java:
	(createGraphics): Implemented.

2004-02-24  David Jee  <djee@redhat.com>

	* java/awt/Component.java
	(eventTypeEnabled): Add MOUSE_MOVED and MOUSE_DRAGGED event types.
	* java/awt/Container.java
	(addNotifyContainerChildren): Fix event enabling.

2004-02-23  Olga Rodimina  <rodimina@redhat.com>

	* Makefile.am: Added
	gnu/java/awt/peer/gtk/GdkGraphicsEnvironment.java
	* Makefile.in: Re-generated.
	* gnu/java/awt/peer/gtk/GdkGraphicsEnvironment.java:
	New Class.

2004-02-19  Kim Ho  <kho@redhat.com>

	* Makefile.am: Add BasicProgressBarUI
	* Makefile.in: Regenerate.
	* javax/swing/JProgressBar.java:
	Re-implement.
	* javax/swing/plaf/basic/BasicLookAndFeel.java
	Add constants for JProgressBar.
	* javax/swing/plaf/basic/BasicProgressBarUI.java
	Implement.
	* javax/swing/plaf/basic/BasicSliderUI.java
	Change comments.
	(calculateGeometry): New method
	(paint): Remove unnecessary size calculations.

2004-02-18  Olga Rodimina  <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java
	(drawRaster): Fixed small error that caused
	imageToUser transformation to be set incorrectly.
	(toString): Implemented.

2004-02-18  David Jee  <djee@redhat.com>

	* java/awt/CardLayout.java
	(addLayoutComponent): Show the first component added as the default.
	(removeLayoutComponent): After removing, show the next component.
	(gotoComponent): If there is only one component, show it and return.

2004-02-18  Kim Ho  <kho@redhat.com>

	* javax/swing/JSlider.java: Re-order
	modifiers.
	* javax/swing/JLabel.java: Re-order
	modifiers.
	* javax/swing/JComponent.java:
	(addPropertyChangeListener):
	Implement.
	(removePropertyChangeListener):
	ditto.
	(firePropertyChangeEvent):
	ditto.

2004-02-17  David Jee  <djee@redhat.com>

	* java/awt/Component.java
	(show): Dispatch ComponentEvent via system event queue.
	(hide): Likewise.
	(move): Likewise.
	(resize): Likewise.
	(reshape): Likewise.
	* java/awt/Window.java
	(setBoundsCallback): Likewise.

2004-02-17  David Jee  <djee@redhat.com>

	* jni/gtk-peer/gnu_java_awt_peer_gtk_GtkComponentPeer.c
	(Java_gnu_java_awt_peer_gtk_GtkComponentPeer_setNativeBounds):
	Use gtk_widget_set_size_request() instead of the deprecated
	gtk_widget_set_usize().

2004-02-17  Kim Ho  <kho@redhat.com>

	* javax/swing/JSlider.java: Fix comments and
	make property strings constants.
	(createStandardLabels): Use the labels
	preferred size as bounds.
	* javax/swing/plaf/basic/BasicSliderUI.java
	Fix comments.
	(ScrollHandler::actionPerformed): Don't
	calculate the timer stop value. Let the
	MouseListeners find the stop location.
	(getPreferredHorizontalSize): Re-implement.
	(getPreferredVerticalSize): ditto.
	(getMinimumHorizontalSize): ditto.
	(getMinimumVerticalSize): ditto.
	(getPreferredSize): ditto.
	(getMinimumSize): ditto.
	(getMaximumSize): ditto.
	(paintTicks): Use doubles to find the
	tick location.
	(paintHorizontalLabel):�� Use preferredSize
	as initial width and height.
	(paintVerticalLabel): ditto.

2004-02-17  Kim Ho  <kho@redhat.com>

	* javax/swing/JLabel.java: Changed
	property strings to constants.
	(DISPLAYED_MNEMONIC_INDEX_CHANGED_PROPERTY):
	New property.
	(setText): Change mnemonic index if
	text is too short.
	(setDisplayedMnemonicIndex): Fire property
	change event.
	(getDisplayedMnemonicIndex): Remove check
	against short text.

2004-02-17 Olga Rodimina <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java:
	(drawImage(img,xform,obs)): Invert xform before
	passing the xform to cairo.
	(drawImage(img,x,y,bgcolor,obs)): Implemented.
	(drawImage (img,x,y,w,h,bgcolor,obs)): Partly
	implemented.
	(drawImage (img,x,y,w,h,obs)): Implemented.
	(drawImage (img,dx1,dy1,dx2,dy2,sx1,sy1,sx2,sy2,
	bgcolor,obs)): Partly implemented.
	(drawImage (img,dx1,dy1,dx2,dy2,sx1,sy1,sx2,sy2,obs)):
	Implemented.
	* java/awt/image/BufferedImage.java:
	(copyData): if dest is null, create raster with same
	dimensions as the current image.

2004-02-16  Graydon Hoare  <graydon@redhat.com>

	* javax/swing/plaf/basic/BasicLabelUI.java
	(getPreferredSize): Use layoutCL.
	* javax/swing/plaf/basic/BasicGraphicsUtils.java
	(getPreferredButtonSize): Start with empty view rect, layout using
	component's preferred alignment.
	* javax/swing/plaf/basic/BasicLookAndFeel.java: Add some Label and
	List defaults.

2004-02-16  David Jee  <djee@redhat.com>

	* java/awt/Component.java
	(show): Dispatch COMPONENT_SHOWN ComponentEvent.
	(hide): Dispatch COMPONENT_HIDDEN ComponentEvent.
	(move): Erase old bounds and repaint new bounds. Dispatch
	COMPONENT_MOVED ComponentEvent.
	(resize): Erase old bounds and repaint new bounds. Dispatch
	COMPONENT_RESIZED ComponentEvent.
	(reshape): Dispatch COMPONENT_RESIZED and COMPONENT_MOVED
	ComponentEvents.
	* java/awt/Window.java
	(setBoundsCallback): Dispatch COMPONENT_RESIZED and COMPONENT_MOVED
	ComponentEvents.

2004-02-16  Olga Rodimina  <rodimina@redhat.com>

	* gnu/java/awt/peer/gtk/GdkGraphics2D.java:
	(setRenderingHint): Added implementation of
	Interpolation rendering hints.
	(setRenderingHints): Ditto.
	* jni/gtk-peer/gnu_java_awt_peer_gtk_GdkGraphics2D.c:
	(drawPixels): fixed to allow user to choose type
	of filtering that should be used when displaying images.
	(cairoSurfaceSetFilter): New method. Sets filter type for
	interpolation of pixel values.

2004-02-16  David Jee  <djee@redhat.com>

	* java/awt/GridBagLayout.java
	(calcCellSizes): Rows or columns with zero sizes should still be
	considered for extra space distribution.

2004-02-16  Kim Ho  <kho@redhat.com>

	* javax/swing/JLabel.java: Re-implement.
	* javax/swing/plaf/basic/BasicLabelUI.java
	Re-implement.
	* javax/swing/plaf/basic/BasicLookAndFeel.java:
	Added constant.

2004-02-16�� Kim Ho�� <kho@redhat.com>

	* javax/swing/JSlider.java: Fix indentation and comments.
	(setModel): Remove null check to conform with Sun's.
	(setOrientation): Throw exception if not
	HORIZONTAL or VERTICAL.
	(getInverted): Use private variable instead of
	ComponentOrientation.
	(setInverted): ditto.
	* javax/swing/plaf/basic/BasicSliderUI.java:
	Fix indentation and comments.
	(propertyChange): Remove check for inverted slider, handle
	in main paint.
	(getMinimumSize): Return preferred size.
	(getMaximumSize): ditto.
	(calculateFocusRect): Don't relocate rectangle.
	(drawInverted): Return XOR of the slider's inversion and
	the component's orientation.
	(paint): Update leftToRightCache

2004-02-13  David Jee  <djee@redhat.com>

	* java/awt/GridBagLayout.java
	(GetLayoutInfo): Fix weight and size distribution. Relocate repeated
	code to helper methods.
	(sortBySpan): New helper method.
	(distributeSizeAndWeight): Likewise.
	(calcCellWeights): Likewise.
	(calcCellSizes): Add comments.

2004-02-13  David Jee  <djee@redhat.com>

	* java/awt/Component.java
        (show): Only do something if component is invisible at the moment.
        (hide): Only do something if component is visible at the moment.
        (reshape): If lightweight, erase old bounds and repaint new bounds.

2004-02-13�� Kim Ho�� <kho@redhat.com>

	* Makefile.am: Updated for new file.
	* Makefile.in: Regenerated.
	* javax/swing/JSlider.java: Reimplement.
	* javax/swing/SwingUtilities.java
	(layoutCompoundLabel): Use icon height
	instead of width.
	(paintComponent): Implement.
	* javax/swing/plaf/basic/BasicLookAndFeel.java:
	Add JSlider defaults.
	* javax/swing/plaf/basic/BasicSliderUI.java:
	Implement. New file.

From-SVN: r79607
2004-03-17 21:29:02 +00:00

1055 lines
34 KiB
Java

/* GridBagLayout - Layout manager for components according to GridBagConstraints
Copyright (C) 2002, 2003 Free Software Foundation, Inc.
This file is part of GNU Classpath.
GNU Classpath is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2, or (at your option)
any later version.
GNU Classpath is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
General Public License for more details.
You should have received a copy of the GNU General Public License
along with GNU Classpath; see the file COPYING. If not, write to the
Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
02111-1307 USA.
Linking this library statically or dynamically with other modules is
making a combined work based on this library. Thus, the terms and
conditions of the GNU General Public License cover the whole
combination.
As a special exception, the copyright holders of this library give you
permission to link this library with independent modules to produce an
executable, regardless of the license terms of these independent
modules, and to copy and distribute the resulting executable under
terms of your choice, provided that you also meet, for each linked
independent module, the terms and conditions of the license of that
module. An independent module is a module which is not derived from
or based on this library. If you modify this library, you may extend
this exception to your version of the library, but you are not
obligated to do so. If you do not wish to do so, delete this
exception statement from your version. */
package java.awt;
import java.io.Serializable;
import java.util.ArrayList;
import java.util.Hashtable;
import java.util.HashMap;
/**
* @author Michael Koch <konqueror@gmx.de>
* @author Jeroen Frijters <jeroen@frijters.net>
*/
public class GridBagLayout
implements Serializable, LayoutManager2
{
private static final long serialVersionUID = 8838754796412211005L;
protected static final int MINSIZE = 1;
protected static final int PREFERREDSIZE = 2;
protected static final int MAXGRIDSIZE = 512;
// comptable remembers the original contraints given to us.
// internalcomptable is used to keep track of modified constraint values
// that we calculate, particularly when we are given RELATIVE and
// REMAINDER constraints.
// Constraints kept in comptable are never modified, and constraints
// kept in internalcomptable can be modified internally only.
protected Hashtable comptable;
private Hashtable internalcomptable;
protected GridBagLayoutInfo layoutInfo;
protected GridBagConstraints defaultConstraints;
public double[] columnWeights;
public int[] columnWidths;
public double[] rowWeights;
public int[] rowHeights;
public GridBagLayout ()
{
this.comptable = new Hashtable();
this.internalcomptable = new Hashtable();
this.defaultConstraints= new GridBagConstraints();
}
/**
* Helper method to calc the sum of a range of elements in an int array.
*/
private int sumIntArray (int[] array, int upto)
{
int result = 0;
for (int i = 0; i < upto; i++)
result += array [i];
return result;
}
/**
* Helper method to calc the sum of all elements in an int array.
*/
private int sumIntArray (int[] array)
{
return sumIntArray(array, array.length);
}
/**
* Helper method to calc the sum of all elements in an double array.
*/
private double sumDoubleArray (double[] array)
{
double result = 0;
for (int i = 0; i < array.length; i++)
result += array [i];
return result;
}
public void addLayoutComponent (String name, Component component)
{
// do nothing here.
}
public void removeLayoutComponent (Component component)
{
// do nothing here
}
public void addLayoutComponent (Component component, Object constraints)
{
if (constraints == null)
return;
if (!(constraints instanceof GridBagConstraints))
throw new IllegalArgumentException();
setConstraints (component, (GridBagConstraints) constraints);
}
public Dimension preferredLayoutSize (Container parent)
{
if (parent == null)
return new Dimension (0, 0);
GridBagLayoutInfo li = getLayoutInfo (parent, PREFERREDSIZE);
return getMinSize (parent, li);
}
public Dimension minimumLayoutSize (Container parent)
{
if (parent == null)
return new Dimension (0, 0);
GridBagLayoutInfo li = getLayoutInfo (parent, MINSIZE);
return getMinSize (parent, li);
}
public Dimension maximumLayoutSize (Container target)
{
return new Dimension (Integer.MAX_VALUE, Integer.MAX_VALUE);
}
public void layoutContainer (Container parent)
{
arrangeGrid (parent);
}
public float getLayoutAlignmentX (Container target)
{
return Component.CENTER_ALIGNMENT;
}
public float getLayoutAlignmentY (Container target)
{
return Component.CENTER_ALIGNMENT;
}
public void invalidateLayout (Container target)
{
this.layoutInfo = null;
}
public void setConstraints (Component component,
GridBagConstraints constraints)
{
GridBagConstraints clone = (GridBagConstraints) constraints.clone();
if (clone.gridx < 0)
clone.gridx = GridBagConstraints.RELATIVE;
if (clone.gridy < 0)
clone.gridy = GridBagConstraints.RELATIVE;
if (clone.gridwidth == 0)
clone.gridwidth = GridBagConstraints.REMAINDER;
else if (clone.gridwidth < 0
&& clone.gridwidth != GridBagConstraints.REMAINDER
&& clone.gridwidth != GridBagConstraints.RELATIVE)
clone.gridwidth = 1;
if (clone.gridheight == 0)
clone.gridheight = GridBagConstraints.REMAINDER;
else if (clone.gridheight < 0
&& clone.gridheight != GridBagConstraints.REMAINDER
&& clone.gridheight != GridBagConstraints.RELATIVE)
clone.gridheight = 1;
comptable.put (component, clone);
}
public GridBagConstraints getConstraints (Component component)
{
return (GridBagConstraints) (lookupConstraints (component).clone());
}
protected GridBagConstraints lookupConstraints (Component component)
{
GridBagConstraints result = (GridBagConstraints) comptable.get (component);
if (result == null)
{
setConstraints (component, defaultConstraints);
result = (GridBagConstraints) comptable.get (component);
}
return result;
}
private GridBagConstraints lookupInternalConstraints (Component component)
{
GridBagConstraints result =
(GridBagConstraints) internalcomptable.get (component);
if (result == null)
{
result = (GridBagConstraints) lookupConstraints(component).clone();
internalcomptable.put (component, result);
}
return result;
}
/**
* @since 1.1
*/
public Point getLayoutOrigin ()
{
if (layoutInfo == null)
return new Point (0, 0);
return new Point (layoutInfo.pos_x, layoutInfo.pos_y);
}
/**
* @since 1.1
*/
public int[][] getLayoutDimensions ()
{
int[][] result = new int [2][];
if (layoutInfo == null)
{
result[0] = new int[0];
result[1] = new int[0];
return result;
}
result [0] = new int [layoutInfo.cols];
System.arraycopy (layoutInfo.colWidths, 0, result [0], 0, layoutInfo.cols);
result [1] = new int [layoutInfo.rows];
System.arraycopy (layoutInfo.rowHeights, 0, result [1], 0, layoutInfo.rows);
return result;
}
public double[][] getLayoutWeights ()
{
double[][] result = new double [2][];
if (layoutInfo == null)
{
result[0] = new double[0];
result[1] = new double[0];
return result;
}
result [0] = new double [layoutInfo.cols];
System.arraycopy (layoutInfo.colWeights, 0, result [0], 0, layoutInfo.cols);
result [1] = new double [layoutInfo.rows];
System.arraycopy (layoutInfo.rowWeights, 0, result [1], 0, layoutInfo.rows);
return result;
}
/**
* @since 1.1
*/
public Point location (int x, int y)
{
if (layoutInfo == null)
return new Point (0, 0);
int col;
int row;
int pixel_x = layoutInfo.pos_x;
int pixel_y = layoutInfo.pos_y;
for (col = 0; col < layoutInfo.cols; col++)
{
int w = layoutInfo.colWidths [col];
if (x < pixel_x + w)
break;
pixel_x += w;
}
for (row = 0; row < layoutInfo.rows; row++)
{
int h = layoutInfo.rowHeights [row];
if (y < pixel_y + h)
break;
pixel_y += h;
}
return new Point (col, row);
}
/**
* Obsolete.
*/
protected void AdjustForGravity (GridBagConstraints gbc, Rectangle rect)
{
// FIXME
throw new Error ("Not implemented");
}
/**
* Obsolete.
*/
protected void ArrangeGrid (Container parent)
{
Component[] components = parent.getComponents();
if (components.length == 0)
return;
GridBagLayoutInfo info = getLayoutInfo (parent, MINSIZE);
if (info.cols == 0 && info.rows == 0)
return;
layoutInfo = info;
// DEBUG
//dumpLayoutInfo (layoutInfo);
for(int i = 0; i < components.length; i++)
{
Component component = components [i];
// If component is not visible we dont have to care about it.
if (!component.isVisible())
continue;
GridBagConstraints constraints =
lookupInternalConstraints(component);
int cellx = sumIntArray(layoutInfo.colWidths, constraints.gridx);
int celly = sumIntArray(layoutInfo.rowHeights, constraints.gridy);
int cellw = sumIntArray(layoutInfo.colWidths,
constraints.gridx + constraints.gridwidth) - cellx;
int cellh = sumIntArray(layoutInfo.rowHeights,
constraints.gridy + constraints.gridheight) - celly;
Insets insets = constraints.insets;
if (insets != null)
{
cellx += insets.left;
celly += insets.top;
cellw -= insets.left + insets.right;
cellh -= insets.top + insets.bottom;
}
Dimension dim = component.getPreferredSize();
// Note: Documentation says that padding is added on both sides, but
// visual inspection shows that the Sun implementation only adds it
// once, so we do the same.
dim.width += constraints.ipadx;
dim.height += constraints.ipady;
switch(constraints.fill)
{
case GridBagConstraints.HORIZONTAL:
dim.width = cellw;
break;
case GridBagConstraints.VERTICAL:
dim.height = cellh;
break;
case GridBagConstraints.BOTH:
dim.width = cellw;
dim.height = cellh;
break;
}
int x;
int y;
switch(constraints.anchor)
{
case GridBagConstraints.NORTH:
x = cellx + (cellw - dim.width) / 2;
y = celly;
break;
case GridBagConstraints.SOUTH:
x = cellx + (cellw - dim.width) / 2;
y = celly + cellh - dim.height;
break;
case GridBagConstraints.WEST:
x = cellx;
y = celly + (cellh - dim.height) / 2;
break;
case GridBagConstraints.EAST:
x = cellx + cellw - dim.width;
y = celly + (cellh - dim.height) / 2;
break;
case GridBagConstraints.NORTHEAST:
x = cellx + cellw - dim.width;
y = celly;
break;
case GridBagConstraints.NORTHWEST:
x = cellx;
y = celly;
break;
case GridBagConstraints.SOUTHEAST:
x = cellx + cellw - dim.width;
y = celly + cellh - dim.height;
break;
case GridBagConstraints.SOUTHWEST:
x = cellx;
y = celly + cellh - dim.height;
break;
default:
x = cellx + (cellw - dim.width) / 2;
y = celly + (cellh - dim.height) / 2;
break;
}
component.setBounds(layoutInfo.pos_x + x, layoutInfo.pos_y + y, dim.width, dim.height);
}
// DEBUG
//dumpLayoutInfo (layoutInfo);
}
/**
* Obsolete.
*/
protected GridBagLayoutInfo GetLayoutInfo (Container parent, int sizeflag)
{
if (sizeflag != MINSIZE && sizeflag != PREFERREDSIZE)
throw new IllegalArgumentException();
Dimension parentDim = parent.getSize ();
Insets parentInsets = parent.getInsets ();
parentDim.width -= parentInsets.left + parentInsets.right;
parentDim.height -= parentInsets.top + parentInsets.bottom;
int current_y = 0;
int max_x = 0;
int max_y = 0;
// Guaranteed to contain the last component added to the given row
// or column, whose gridwidth/height is not REMAINDER.
HashMap lastInRow = new HashMap();
HashMap lastInCol = new HashMap();
Component[] components = parent.getComponents();
// Components sorted by gridwidths/heights,
// smallest to largest, with REMAINDER and RELATIVE at the end.
// These are useful when determining sizes and weights.
ArrayList sortedByWidth = new ArrayList(components.length);
ArrayList sortedByHeight = new ArrayList(components.length);
// STEP 1: first we figure out how many rows/columns
for (int i = 0; i < components.length; i++)
{
Component component = components [i];
// If component is not visible we dont have to care about it.
if (!component.isVisible())
continue;
// When looking up the constraint for the first time, check the
// original unmodified constraint. After the first time, always
// refer to the internal modified constraint.
GridBagConstraints originalConstraints = lookupConstraints (component);
GridBagConstraints constraints = (GridBagConstraints) originalConstraints.clone();
internalcomptable.put(component, constraints);
// Cases:
//
// 1. gridy == RELATIVE, gridx == RELATIVE
//
// use y as the row number; check for the next
// available slot at row y
//
// 2. only gridx == RELATIVE
//
// check for the next available slot at row gridy
//
// 3. only gridy == RELATIVE
//
// check for the next available slot at column gridx
//
// 4. neither gridx or gridy == RELATIVE
//
// nothing to check; just add it
// cases 1 and 2
if(constraints.gridx == GridBagConstraints.RELATIVE)
{
if (constraints.gridy == GridBagConstraints.RELATIVE)
constraints.gridy = current_y;
int x;
// Check the component that occupies the right-most spot in this
// row. We want to add this component after it.
// If this row is empty, add to the 0 position.
if (!lastInRow.containsKey(new Integer(constraints.gridy)))
x = 0;
else
{
Component lastComponent = (Component) lastInRow.get(new Integer(constraints.gridy));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
x = lastConstraints.gridx + Math.max(1, lastConstraints.gridwidth);
}
// Determine if this component will fit in the slot vertically.
// If not, bump it over to where it does fit.
for (int y = constraints.gridy + 1; y < constraints.gridy + Math.max(1, constraints.gridheight); y++)
{
if (lastInRow.containsKey(new Integer(y)))
{
Component lastComponent = (Component) lastInRow.get(new Integer(y));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
x = Math.max (x,
lastConstraints.gridx + Math.max(1, lastConstraints.gridwidth));
}
}
constraints.gridx = x;
}
// case 3
else if(constraints.gridy == GridBagConstraints.RELATIVE)
{
int y;
// Check the component that occupies the bottom-most spot in
// this column. We want to add this component below it.
// If this column is empty, add to the 0 position.
if (!lastInCol.containsKey(new Integer(constraints.gridx)))
y = 0;
else
{
Component lastComponent = (Component)lastInCol.get(new Integer(constraints.gridx));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
y = lastConstraints.gridy + Math.max(1, lastConstraints.gridheight);
}
// Determine if this component will fit in the slot horizontally.
// If not, bump it down to where it does fit.
for (int x = constraints.gridx + 1; x < constraints.gridx + Math.max(1, constraints.gridwidth); x++)
{
if (lastInCol.containsKey(new Integer(x)))
{
Component lastComponent = (Component) lastInCol.get(new Integer(x));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
y = Math.max (y,
lastConstraints.gridy + Math.max(1, lastConstraints.gridheight));
}
}
constraints.gridy = y;
}
// case 4: do nothing
max_x = Math.max(max_x,
constraints.gridx + Math.max(1, constraints.gridwidth));
max_y = Math.max(max_y,
constraints.gridy + Math.max(1, constraints.gridheight));
sortBySpan(component, constraints.gridwidth, sortedByWidth, true);
sortBySpan(component, constraints.gridheight, sortedByHeight, false);
// Update our reference points for RELATIVE gridx and gridy.
if(constraints.gridwidth == GridBagConstraints.REMAINDER)
{
current_y = constraints.gridy + Math.max(1, constraints.gridheight);
}
else if (constraints.gridwidth != GridBagConstraints.REMAINDER)
{
for (int y = constraints.gridy; y < constraints.gridy + Math.max(1, constraints.gridheight); y++)
{
if(lastInRow.containsKey(new Integer(y)))
{
Component lastComponent = (Component) lastInRow.get(new Integer(y));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
if (constraints.gridx > lastConstraints.gridx)
{
lastInRow.put(new Integer(y), component);
}
}
else
{
lastInRow.put(new Integer(y), component);
}
}
for (int x = constraints.gridx; x < constraints.gridx + Math.max(1, constraints.gridwidth); x++)
{
if(lastInCol.containsKey(new Integer(x)))
{
Component lastComponent = (Component) lastInCol.get(new Integer(x));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
if (constraints.gridy > lastConstraints.gridy)
{
lastInCol.put(new Integer(x), component);
}
}
else
{
lastInCol.put(new Integer(x), component);
}
}
}
} // end of STEP 1
GridBagLayoutInfo info = new GridBagLayoutInfo(max_x, max_y);
// Check if column widths and row heights are overridden.
for (int x = 0; x < max_x; x++)
{
if(columnWidths != null && columnWidths.length > x)
info.colWidths[x] = columnWidths[x];
if(columnWeights != null && columnWeights.length > x)
info.colWeights[x] = columnWeights[x];
}
for (int y = 0; y < max_y; y++)
{
if(rowHeights != null && rowHeights.length > y)
info.rowHeights[y] = rowHeights[y];
if(rowWeights != null && rowWeights.length > y)
info.rowWeights[y] = rowWeights[y];
}
// STEP 2: Fix up any cells with width/height as REMAINDER/RELATIVE.
for (int i = 0; i < components.length; i++)
{
Component component = components [i];
// If component is not visible we dont have to care about it.
if (!component.isVisible())
continue;
GridBagConstraints constraints = lookupInternalConstraints (component);
if(constraints.gridwidth == GridBagConstraints.REMAINDER || constraints.gridwidth == GridBagConstraints.RELATIVE)
{
if(constraints.gridwidth == GridBagConstraints.REMAINDER)
{
for (int y = constraints.gridy; y < constraints.gridy + Math.max(1, constraints.gridheight); y++)
{
if (lastInRow.containsKey(new Integer(y)))
{
Component lastComponent = (Component) lastInRow.get(new Integer(y));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
if (lastConstraints.gridwidth == GridBagConstraints.RELATIVE)
{
constraints.gridx = max_x - 1;
break;
}
else
{
constraints.gridx = Math.max (constraints.gridx,
lastConstraints.gridx + Math.max (1, lastConstraints.gridwidth));
}
}
}
constraints.gridwidth = max_x - constraints.gridx;
}
else if (constraints.gridwidth == GridBagConstraints.RELATIVE)
{
constraints.gridwidth = max_x - constraints.gridx - 1;
}
// Re-sort
sortedByWidth.remove(sortedByWidth.indexOf(component));
sortBySpan(component, constraints.gridwidth, sortedByWidth, true);
}
if(constraints.gridheight == GridBagConstraints.REMAINDER || constraints.gridheight == GridBagConstraints.RELATIVE)
{
if(constraints.gridheight == GridBagConstraints.REMAINDER)
{
for (int x = constraints.gridx; x < constraints.gridx + Math.max(1, constraints.gridwidth); x++)
{
if (lastInCol.containsKey(new Integer(x)))
{
Component lastComponent = (Component) lastInRow.get(new Integer(x));
GridBagConstraints lastConstraints = lookupInternalConstraints(lastComponent);
if (lastConstraints.gridheight == GridBagConstraints.RELATIVE)
{
constraints.gridy = max_y - 1;
break;
}
else
{
constraints.gridy = Math.max (constraints.gridy,
lastConstraints.gridy + Math.max (1, lastConstraints.gridheight));
}
}
}
constraints.gridheight = max_y - constraints.gridy;
}
else if (constraints.gridheight == GridBagConstraints.RELATIVE)
{
constraints.gridheight = max_y - constraints.gridy - 1;
}
// Re-sort
sortedByHeight.remove(sortedByHeight.indexOf(component));
sortBySpan(component, constraints.gridheight, sortedByHeight, false);
}
} // end of STEP 2
// STEP 3: Determine sizes and weights for columns.
for (int i = 0; i < sortedByWidth.size(); i++)
{
Component component = (Component) sortedByWidth.get(i);
// If component is not visible we dont have to care about it.
if (!component.isVisible())
continue;
GridBagConstraints constraints = lookupInternalConstraints (component);
int width = (sizeflag == PREFERREDSIZE) ?
component.getPreferredSize().width :
component.getMinimumSize().width;
if(constraints.insets != null)
width += constraints.insets.left + constraints.insets.right;
width += constraints.ipadx;
distributeSizeAndWeight(width,
constraints.weightx,
constraints.gridx,
constraints.gridwidth,
info.colWidths,
info.colWeights);
} // end of STEP 3
// STEP 4: Determine sizes and weights for rows.
for (int i = 0; i < sortedByHeight.size(); i++)
{
Component component = (Component) sortedByHeight.get(i);
// If component is not visible we dont have to care about it.
if (!component.isVisible())
continue;
GridBagConstraints constraints = lookupInternalConstraints (component);
int height = (sizeflag == PREFERREDSIZE) ?
component.getPreferredSize().height :
component.getMinimumSize().height;
if(constraints.insets != null)
height += constraints.insets.top + constraints.insets.bottom;
height += constraints.ipady;
distributeSizeAndWeight(height,
constraints.weighty,
constraints.gridy,
constraints.gridheight,
info.rowHeights,
info.rowWeights);
} // end of STEP 4
calcCellSizes (info.colWidths, info.colWeights, parentDim.width);
calcCellSizes (info.rowHeights, info.rowWeights, parentDim.height);
int totalWidth = sumIntArray(info.colWidths);
int totalHeight = sumIntArray(info.rowHeights);
info.pos_x = parentInsets.left + (parentDim.width - totalWidth) / 2;
info.pos_y = parentInsets.top + (parentDim.height - totalHeight) / 2;
// DEBUG
//dumpLayoutInfo (info);
return info;
}
/**
* Obsolete.
*/
protected Dimension GetMinSize (Container parent, GridBagLayoutInfo info)
{
if (parent == null || info == null)
return new Dimension (0, 0);
Insets insets = parent.getInsets();
int width = sumIntArray (info.colWidths) + insets.left + insets.right;
int height = sumIntArray (info.rowHeights) + insets.top + insets.bottom;
return new Dimension (width, height);
}
/**
* @since 1.4
*/
protected Dimension getMinSize (Container parent, GridBagLayoutInfo info)
{
return GetMinSize (parent, info);
}
/**
* Helper method used by GetLayoutInfo to keep components sorted, either
* by gridwidth or gridheight.
*
* @param component Component to add to the sorted list.
* @param span Either the component's gridwidth or gridheight.
* @param list <code>ArrayList</code> of components, sorted by
* their span.
* @param sortByWidth Flag indicating sorting index. If true, sort by
* width. Otherwise, sort by height.
* FIXME: Use a better sorting algorithm.
*/
private void sortBySpan (Component component, int span, ArrayList list, boolean sortByWidth)
{
if (span == GridBagConstraints.REMAINDER
|| span == GridBagConstraints.RELATIVE)
{
// Put all RELATIVE and REMAINDER components at the end.
list.add(component);
}
else
{
int i = 0;
if (list.size() > 0)
{
GridBagConstraints gbc = lookupInternalConstraints((Component) list.get(i));
int otherspan = sortByWidth ?
gbc.gridwidth :
gbc.gridheight;
while (otherspan != GridBagConstraints.REMAINDER
&& otherspan != GridBagConstraints.RELATIVE
&& span >= otherspan)
{
i++;
if (i < list.size())
{
gbc = lookupInternalConstraints((Component) list.get(i));
otherspan = sortByWidth ?
gbc.gridwidth :
gbc.gridheight;
}
else
break;
}
}
list.add(i, component);
}
}
/**
* Helper method used by GetLayoutInfo to distribute a component's size
* and weight.
*
* @param size Preferred size of component, with inset and padding
* already added.
* @param weight Weight of component.
* @param start Starting position of component. Either
* constraints.gridx or gridy.
* @param span Span of component. either contraints.gridwidth or
* gridheight.
* @param sizes Sizes of rows or columns.
* @param weights Weights of rows or columns.
*/
private void distributeSizeAndWeight (int size, double weight,
int start, int span,
int[] sizes, double[] weights)
{
if (span == 1)
{
sizes[start] = Math.max(sizes[start], size);
weights[start] = Math.max(weights[start], weight);
}
else
{
int numOccupied = span;
int lastOccupied = -1;
for(int i = start; i < start + span; i++)
{
if (sizes[i] == 0.0)
numOccupied--;
else
{
size -= sizes[i];
lastOccupied = i;
}
}
// A component needs to occupy at least one row.
if(numOccupied == 0)
sizes[start + span - 1] = size;
else if (size > 0)
sizes[lastOccupied] += size;
calcCellWeights(weight, weights, start, span);
}
}
/**
* Helper method used by GetLayoutInfo to calculate weight distribution.
* @param weight Weight of component.
* @param weights Weights of rows/columns.
* @param start Starting position of component in grid (gridx/gridy).
* @param span Span of component (gridwidth/gridheight).
*/
private void calcCellWeights (double weight, double[] weights, int start, int span)
{
double totalWeight = 0.0;
for(int k = start; k < start + span; k++)
totalWeight += weights[k];
if(weight > totalWeight)
{
if (totalWeight == 0.0)
{
weights[start + span - 1] += weight;
}
else
{
double diff = weight - totalWeight ;
double remaining = diff;
for(int k = start; k < start + span; k++)
{
double extraWeight = diff * weights[k] / totalWeight;
weights[k] += extraWeight;
remaining -= extraWeight;
}
if (remaining > 0.0 && weights[start + span - 1] != 0.0)
{
weights[start + span - 1] += remaining;
}
}
}
}
/**
* Helper method used by GetLayoutInfo to distribute extra space
* based on weight distribution.
*
* @param sizes Sizes of rows/columns.
* @param weights Weights of rows/columns.
* @param range Dimension of container.
*/
private void calcCellSizes (int[] sizes, double[] weights, int range)
{
int totalSize = sumIntArray (sizes);
double totalWeight = sumDoubleArray (weights);
int diff = range - totalSize;
if (diff == 0)
return;
for (int i = 0; i < sizes.length; i++)
{
int newsize = (int) (sizes[i] + (((double) diff) * weights [i] / totalWeight ));
if (newsize > 0)
sizes[i] = newsize;
}
}
private void dumpLayoutInfo (GridBagLayoutInfo info)
{
System.out.println ("GridBagLayoutInfo:");
System.out.println ("cols: " + info.cols + ", rows: " + info.rows);
System.out.print ("colWidths: ");
dumpArray(info.colWidths);
System.out.print ("rowHeights: ");
dumpArray(info.rowHeights);
System.out.print ("colWeights: ");
dumpArray(info.colWeights);
System.out.print ("rowWeights: ");
dumpArray(info.rowWeights);
}
private void dumpArray(int[] array)
{
String sep = "";
for(int i = 0; i < array.length; i++)
{
System.out.print(sep);
System.out.print(array[i]);
sep = ", ";
}
System.out.println();
}
private void dumpArray(double[] array)
{
String sep = "";
for(int i = 0; i < array.length; i++)
{
System.out.print(sep);
System.out.print(array[i]);
sep = ", ";
}
System.out.println();
}
/**
* @since 1.4
*/
protected void arrangeGrid (Container parent)
{
ArrangeGrid (parent);
}
/**
* @since 1.4
*/
protected GridBagLayoutInfo getLayoutInfo (Container parent, int sizeflag)
{
return GetLayoutInfo (parent, sizeflag);
}
/**
* @since 1.4
*/
protected void adjustForGravity (GridBagConstraints gbc, Rectangle rect)
{
AdjustForGravity (gbc, rect);
}
}