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/*
* $Id: PDFState.java,v 1.9 2003/03/07 08:25:46 jeremias Exp $
* ============================================================================
* The Apache Software License, Version 1.1
* ============================================================================
*
* Copyright (C) 1999-2003 The Apache Software Foundation. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without modifica-
* tion, are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
*
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
*
* 3. The end-user documentation included with the redistribution, if any, must
* include the following acknowledgment: "This product includes software
* developed by the Apache Software Foundation (http://www.apache.org/)."
* Alternately, this acknowledgment may appear in the software itself, if
* and wherever such third-party acknowledgments normally appear.
*
* 4. The names "FOP" and "Apache Software Foundation" must not be used to
* endorse or promote products derived from this software without prior
* written permission. For written permission, please contact
* apache@apache.org.
*
* 5. Products derived from this software may not be called "Apache", nor may
* "Apache" appear in their name, without prior written permission of the
* Apache Software Foundation.
*
* THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESSED OR IMPLIED WARRANTIES,
* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND
* FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
* APACHE SOFTWARE FOUNDATION OR ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLU-
* DING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
* ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
* ============================================================================
*
* This software consists of voluntary contributions made by many individuals
* on behalf of the Apache Software Foundation and was originally created by
* James Tauber <jtauber@jtauber.com>. For more information on the Apache
* Software Foundation, please see <http://www.apache.org/>.
*/
package org.apache.fop.pdf;
import java.awt.Shape;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.Iterator;
import java.awt.geom.GeneralPath;
import java.awt.geom.Area;
import java.awt.Color;
import java.awt.Paint;
import java.awt.geom.AffineTransform;
/**
* This keeps information about the current state when writing to pdf.
* It allows for creating new graphics states with the q operator.
* This class is only used to store the information about the state
* the caller needs to handle the actual pdf operators.
*
* When setting the state for pdf there are three possible ways of
* handling the situation.
* The values can be set to override previous or default values.
* A new state can be added and then the values set.
* The current state can be popped and values will return to a
* previous state then the necessary values can be overridden.
* The current transform behaves differently to other values as the
* matrix is combined with the current resolved value.
* It is impossible to optimise the result without analysing the all
* the possible combinations after completing.
*/
public class PDFState {
private static final String COLOR = "color";
private static final String BACKCOLOR = "backcolor";
private static final String PAINT = "paint";
private static final String BACKPAINT = "backpaint";
private static final String LINECAP = "lineCap";
private static final String LINEJOIN = "lineJoin";
private static final String LINEWIDTH = "lineWidth";
private static final String MITERLIMIT = "miterLimit";
private static final String TEXT = "text";
private static final String DASHOFFSET = "dashOffset";
private static final String DASHARRAY = "dashArray";
private static final String TRANSFORM = "transform";
private static final String FONTSIZE = "fontSize";
private static final String FONTNAME = "fontName";
private static final String CLIP = "clip";
private static final String GSTATE = "gstate";
private Color color = Color.black;
private Color backcolor = Color.white;
private Paint paint = null;
private Paint backPaint = null;
private int lineCap = 0;
private int lineJoin = 0;
private float lineWidth = 1;
private float miterLimit = 0;
private boolean text = false;
private int dashOffset = 0;
private int[] dashArray = new int[0];
private AffineTransform transform = new AffineTransform();
private float fontSize = 0;
private String fontName = "";
private Shape clip = null;
private PDFGState gstate = null;
private ArrayList stateStack = new ArrayList();
/**
* PDF State for storing graphics state.
*/
public PDFState() {
}
/**
* Push the current state onto the stack.
* This call should be used when the q operator is used
* so that the state is known when popped.
*/
public void push() {
HashMap saveMap = new HashMap();
saveMap.put(COLOR, color);
saveMap.put(BACKCOLOR, backcolor);
saveMap.put(PAINT, paint);
saveMap.put(BACKPAINT, backPaint);
saveMap.put(LINECAP, new Integer(lineCap));
saveMap.put(LINEJOIN, new Integer(lineJoin));
saveMap.put(LINEWIDTH, new Float(lineWidth));
saveMap.put(MITERLIMIT, new Float(miterLimit));
saveMap.put(TEXT, new Boolean(text));
saveMap.put(DASHOFFSET, new Integer(dashOffset));
saveMap.put(DASHARRAY, dashArray);
saveMap.put(TRANSFORM, transform);
saveMap.put(FONTSIZE, new Float(fontSize));
saveMap.put(FONTNAME, fontName);
saveMap.put(CLIP, clip);
saveMap.put(GSTATE, gstate);
stateStack.add(saveMap);
transform = new AffineTransform();
}
/**
* Pop the state from the stack and set current values to popped state.
* This should be called when a Q operator is used so
* the state is restored to the correct values.
*/
public void pop() {
if (getStackLevel() > 0) {
HashMap saveMap = (HashMap)stateStack.get(stateStack.size() - 1);
stateStack.remove(stateStack.size() - 1);
color = (Color)saveMap.get(COLOR);
backcolor = (Color)saveMap.get(BACKCOLOR);
paint = (Paint)saveMap.get(PAINT);
backPaint = (Paint)saveMap.get(BACKPAINT);
lineCap = ((Integer)saveMap.get(LINECAP)).intValue();
lineJoin = ((Integer)saveMap.get(LINEJOIN)).intValue();
lineWidth = ((Float)saveMap.get(LINEWIDTH)).floatValue();
miterLimit = ((Float)saveMap.get(MITERLIMIT)).floatValue();
text = ((Boolean)saveMap.get(TEXT)).booleanValue();
dashOffset = ((Integer)saveMap.get(DASHOFFSET)).intValue();
dashArray = (int[])saveMap.get(DASHARRAY);
transform = (AffineTransform)saveMap.get(TRANSFORM);
fontSize = ((Float)saveMap.get(FONTSIZE)).floatValue();
fontName = (String)saveMap.get(FONTNAME);
clip = (Shape)saveMap.get(CLIP);
gstate = (PDFGState)saveMap.get(GSTATE);
}
}
/**
* Get the current stack level.
*
* @return the current stack level
*/
public int getStackLevel() {
return stateStack.size();
}
/**
* Restore the state to a particular level.
* this can be used to restore to a known level without making
* multiple pop calls.
*
* @param stack the level to restore to
*/
public void restoreLevel(int stack) {
int pos = stack;
while (stateStack.size() > pos + 1) {
stateStack.remove(stateStack.size() - 1);
}
if (stateStack.size() > pos) {
pop();
}
}
/**
* Set the current line dash.
* Check if setting the line dash to the given values
* will make a change and then set the state to the new values.
*
* @param array the line dash array
* @param offset the line dash start offset
* @return true if the line dash has changed
*/
public boolean setLineDash(int[] array, int offset) {
return false;
}
/**
* Set the current color.
* Check if the new color is a change and then set the current color.
*
* @param col the color to set
* @return true if the color has changed
*/
public boolean setColor(Color col) {
if (!col.equals(color)) {
color = col;
return true;
}
return false;
}
/**
* Set the current background color.
* Check if the background color will change and then set the new color.
*
* @param col the new background color
* @return true if the background color has changed
*/
public boolean setBackColor(Color col) {
if (!col.equals(backcolor)) {
backcolor = col;
return true;
}
return false;
}
/**
* Set the current paint.
* This checks if the paint will change and then sets the current paint.
*
* @param p the new paint
* @return true if the new paint changes the current paint
*/
public boolean setPaint(Paint p) {
if (paint == null) {
if (p != null) {
paint = p;
return true;
}
} else if (!paint.equals(p)) {
paint = p;
return true;
}
return false;
}
/**
* Check if the clip will change the current state.
* A clip is assumed to be used in a situation where it will add
* to any clip in the current or parent states.
* A clip cannot be cleared, this can only be achieved by going to
* a parent level with the correct clip.
* If the clip is different then it may start a new state so that
* it can return to the previous clip.
*
* @param cl the clip shape to check
* @return true if the clip will change the current clip.
*/
public boolean checkClip(Shape cl) {
if (clip == null) {
if (cl != null) {
return true;
}
} else if (!new Area(clip).equals(new Area(cl))) {
return true;
}
// todo check for clips that are larger than the current
return false;
}
/**
* Set the current clip.
* This either sets a new clip or sets the clip to the intersect of
* the old clip and the new clip.
*
* @param cl the new clip in the current state
*/
public void setClip(Shape cl) {
if (clip != null) {
Area newClip = new Area(clip);
newClip.intersect(new Area(cl));
clip = new GeneralPath(newClip);
} else {
clip = cl;
}
}
/**
* Check the current transform.
* The transform for the current state is the combination of all
* transforms in the current state. The parameter is compared
* against this current transform.
*
* @param tf the transform the check against
* @return true if the new transform is different then the current transform
*/
public boolean checkTransform(AffineTransform tf) {
return !tf.equals(transform);
}
/**
* Set a new transform.
* This transform is appended to the transform of
* the current graphic state.
*
* @param tf the transform to concatonate to the current level transform
*/
public void setTransform(AffineTransform tf) {
transform.concatenate(tf);
}
/**
* Get the current transform.
* This gets the combination of all transforms in the
* current state.
*
* @return the calculate combined transform for the current state
*/
public AffineTransform getTransform() {
AffineTransform tf;
AffineTransform at = new AffineTransform();
for (Iterator iter = stateStack.iterator(); iter.hasNext();) {
HashMap map = (HashMap)iter.next();
tf = (AffineTransform)map.get(TRANSFORM);
at.concatenate(tf);
}
at.concatenate(transform);
return at;
}
/**
* Get the grapics state.
* This gets the combination of all graphic states for
* the current context.
* This is the graphic state set with the gs operator not
* the other graphic state changes.
*
* @return the calculated ExtGState in the current context
*/
public PDFGState getGState() {
PDFGState defaultState = PDFGState.DEFAULT;
PDFGState state;
PDFGState newstate = new PDFGState(0);
newstate.addValues(defaultState);
for (Iterator iter = stateStack.iterator(); iter.hasNext();) {
HashMap map = (HashMap)iter.next();
state = (PDFGState)map.get(GSTATE);
if (state != null) {
newstate.addValues(state);
}
}
if (gstate != null) {
newstate.addValues(gstate);
}
return newstate;
}
}
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