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648 lines
31 KiB
Java
648 lines
31 KiB
Java
/*
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* Copyright (c) 1997, 2013, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation. Oracle designates this
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* particular file as subject to the "Classpath" exception as provided
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* by Oracle in the LICENSE file that accompanied this code.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*/
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package javax.swing.text;
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import javax.swing.event.*;
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/**
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* <p>
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* The <code>Document</code> is a container for text that serves
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* as the model for swing text components. The goal for this
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* interface is to scale from very simple needs (a plain text textfield)
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* to complex needs (an HTML or XML document, for example).
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*
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* <p><b>Content</b>
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* <p>
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* At the simplest level, text can be
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* modeled as a linear sequence of characters. To support
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* internationalization, the Swing text model uses
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* <a href="http://www.unicode.org/">unicode</a> characters.
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* The sequence of characters displayed in a text component is
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* generally referred to as the component's <em>content</em>.
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* <p>
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* To refer to locations within the sequence, the coordinates
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* used are the location between two characters. As the diagram
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* below shows, a location in a text document can be referred to
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* as a position, or an offset. This position is zero-based.
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* <p style="text-align:center"><img src="doc-files/Document-coord.gif"
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* alt="The following text describes this graphic.">
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* <p>
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* In the example, if the content of a document is the
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* sequence "The quick brown fox," as shown in the preceding diagram,
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* the location just before the word "The" is 0, and the location after
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* the word "The" and before the whitespace that follows it is 3.
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* The entire sequence of characters in the sequence "The" is called a
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* <em>range</em>.
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* <p>The following methods give access to the character data
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* that makes up the content.
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* <ul>
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* <li>{@link #getLength()}
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* <li>{@link #getText(int, int)}
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* <li>{@link #getText(int, int, javax.swing.text.Segment)}
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* </ul>
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* <p><b>Structure</b>
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* <p>
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* Text is rarely represented simply as featureless content. Rather,
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* text typically has some sort of structure associated with it.
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* Exactly what structure is modeled is up to a particular Document
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* implementation. It might be as simple as no structure (i.e. a
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* simple text field), or it might be something like diagram below.
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* <p style="text-align:center"><img src="doc-files/Document-structure.gif"
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* alt="Diagram shows Book->Chapter->Paragraph">
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* <p>
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* The unit of structure (i.e. a node of the tree) is referred to
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* by the <a href="Element.html">Element</a> interface. Each Element
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* can be tagged with a set of attributes. These attributes
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* (name/value pairs) are defined by the
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* <a href="AttributeSet.html">AttributeSet</a> interface.
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* <p>The following methods give access to the document structure.
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* <ul>
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* <li>{@link #getDefaultRootElement()}
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* <li>{@link #getRootElements()}
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* </ul>
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*
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* <p><b>Mutations</b>
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* <p>
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* All documents need to be able to add and remove simple text.
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* Typically, text is inserted and removed via gestures from
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* a keyboard or a mouse. What effect the insertion or removal
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* has upon the document structure is entirely up to the
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* implementation of the document.
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* <p>The following methods are related to mutation of the
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* document content:
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* <ul>
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* <li>{@link #insertString(int, java.lang.String, javax.swing.text.AttributeSet)}
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* <li>{@link #remove(int, int)}
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* <li>{@link #createPosition(int)}
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* </ul>
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*
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* <p><b>Notification</b>
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* <p>
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* Mutations to the <code>Document</code> must be communicated to
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* interested observers. The notification of change follows the event model
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* guidelines that are specified for JavaBeans. In the JavaBeans
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* event model, once an event notification is dispatched, all listeners
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* must be notified before any further mutations occur to the source
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* of the event. Further, order of delivery is not guaranteed.
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* <p>
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* Notification is provided as two separate events,
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* <a href="../event/DocumentEvent.html">DocumentEvent</a>, and
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* <a href="../event/UndoableEditEvent.html">UndoableEditEvent</a>.
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* If a mutation is made to a <code>Document</code> through its api,
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* a <code>DocumentEvent</code> will be sent to all of the registered
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* <code>DocumentListeners</code>. If the <code>Document</code>
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* implementation supports undo/redo capabilities, an
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* <code>UndoableEditEvent</code> will be sent
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* to all of the registered <code>UndoableEditListener</code>s.
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* If an undoable edit is undone, a <code>DocumentEvent</code> should be
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* fired from the Document to indicate it has changed again.
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* In this case however, there should be no <code>UndoableEditEvent</code>
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* generated since that edit is actually the source of the change
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* rather than a mutation to the <code>Document</code> made through its
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* api.
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* <p style="text-align:center"><img src="doc-files/Document-notification.gif"
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* alt="The preceding text describes this graphic.">
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* <p>
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* Referring to the above diagram, suppose that the component shown
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* on the left mutates the document object represented by the blue
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* rectangle. The document responds by dispatching a DocumentEvent to
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* both component views and sends an UndoableEditEvent to the listening
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* logic, which maintains a history buffer.
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* <p>
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* Now suppose that the component shown on the right mutates the same
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* document. Again, the document dispatches a DocumentEvent to both
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* component views and sends an UndoableEditEvent to the listening logic
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* that is maintaining the history buffer.
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* <p>
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* If the history buffer is then rolled back (i.e. the last UndoableEdit
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* undone), a DocumentEvent is sent to both views, causing both of them to
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* reflect the undone mutation to the document (that is, the
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* removal of the right component's mutation). If the history buffer again
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* rolls back another change, another DocumentEvent is sent to both views,
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* causing them to reflect the undone mutation to the document -- that is,
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* the removal of the left component's mutation.
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* <p>
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* The methods related to observing mutations to the document are:
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* <ul>
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* <li>{@link #addDocumentListener(DocumentListener)}
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* <li>{@link #removeDocumentListener(DocumentListener)}
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* <li>{@link #addUndoableEditListener(UndoableEditListener)}
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* <li>{@link #removeUndoableEditListener(UndoableEditListener)}
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* </ul>
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*
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* <p><b>Properties</b>
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* <p>
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* Document implementations will generally have some set of properties
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* associated with them at runtime. Two well known properties are the
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* <a href="#StreamDescriptionProperty">StreamDescriptionProperty</a>,
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* which can be used to describe where the <code>Document</code> came from,
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* and the <a href="#TitleProperty">TitleProperty</a>, which can be used to
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* name the <code>Document</code>. The methods related to the properties are:
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* <ul>
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* <li>{@link #getProperty(java.lang.Object)}
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* <li>{@link #putProperty(java.lang.Object, java.lang.Object)}
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* </ul>
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*
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* <p><b>Overview and Programming Tips</b>
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* <p><u>{@link javax.swing.text.Element}</u> is an important interface used in constructing a Document.
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* It has the power to describe various structural parts of a document,
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* such as paragraphs, lines of text, or even (in HTML documents) items in lists.
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* Conceptually, the Element interface captures some of the spirit of an SGML document.
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* So if you know SGML, you may already have some understanding of Swing's Element interface.
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* <p>In the Swing text API's document model, the interface Element defines a structural piece of a Document,
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* like a paragraph, a line of text, or a list item in an HTML document.
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* <p>Every Element is either a <i>branch</i> or a <i>leaf</i>. If an element is a branch,
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* the <code>isLeaf()</code> method returns false. If an element is a a leaf, <code>isLeaf()</code> returns true.
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* <p>Branches can have any number of children. Leaves do not have children.
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* To determine how many children a branch has, you can call <code>getElementCount()</code>.
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* To determine the parent of an Element, you can call <code>getParentElement()</code>.
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* Root elements don't have parents, so calling <code>getParentElement()</code> on a root returns null.
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* <p>An Element represents a specific region in a Document that begins with startOffset
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* and ends just before endOffset.
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* The start offset of a branch Element is usually the start offset of its first child.
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* Similarly, the end offset of a branch Element is usually the end offset of its last child.
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* <p>Every Element is associated with an AttributeSet that you can access by calling <code>getAttributes()</code>.
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* In an Element, and AttributeSet is essentially a set of key/value pairs.
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* These pairs are generally used for markup -- such as determining the Element's
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* foreground color, font size, and so on. But it is up to the model, and the developer,
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* to determine what is stored in the AttributeSet.
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* <p>You can obtain the root Element (or Elements) of a Document by calling the
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* methods <code>getDefaultRootElement()</code> and <code>getRootElements()</code>, which are defined in the Document interface.
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* <p>The Document interface is responsible for translating a linear view of the
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* characters into Element operations. It is up to each Document implementation
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* to define what the Element structure is.
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*
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* <p><b>The PlainDocument class</b>
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* <p>The <u>{@link javax.swing.text.PlainDocument}</u> class defines an Element
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* structure in which the root node has a child node for each line of text in the model.
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* <u>Figure 1</u> shows how two lines of text would be modeled by a PlainDocument
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* <p style="text-align:center"><img src="doc-files/plain1.gif"
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* alt="The preceding text describes this graphic.">
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* <p><u>Figure 2</u> shows how how those same two lines of text might map to actual content:
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* <p style="text-align:center"><img src="doc-files/plain2.gif"
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* alt="The preceding text describes this graphic.">
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*
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* <p><b>Inserting text into a PlainDocument</b>
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* <p>As just mentioned, a PlainDocument contains a root Element, which in turn
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* contains an Element for each line of text.
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* When text is inserted into a PlainDocument, it creates the Elements that
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* are needed for an Element to exist for each newline.
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* To illustrate, let's say you wanted to insert a newline at offset 2 in <u>Figure 2</u>, above.
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* To accomplish this objective, you could use the Document method <code>insertString()</code>,
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* using this syntax:
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* <pre><code>document.insertString(2, "\n", null);</code></pre>
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* <p>After invoking the <code>insertString()</code> method, the Element structure would look
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* like the one shown in <u>Figure 3</u>.
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* <p style="text-align:center"><img src="doc-files/plain3.gif"
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* alt="The preceding text describes this graphic.">
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* <p>As another example, let's say you wanted to insert the pattern "new\ntext\n"
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* at offset 2 as shown previously in <u>Figure 2</u>. This operation would have the
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* result shown in <u>Figure 4</u>.
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* <p style="text-align:center"><img src="doc-files/plain4.gif"
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* alt="The preceding text describes this graphic.">
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* <p>In the preceding illustrations, the name of the line Elements is changed
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* after the insertion to match the line numbers.
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* But notice that when this is done, the AttributeSets remain the same.
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* For example, in <u>Figure 2</u>, the AttributeSet of Line 2 matches that of the
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* AttributeSet of Line 4 in <u>Figure 4</u>.
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*
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* <p><b>Removing text from a PlainDocument</b>
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* <p>Removal of text results in a structure change if the deletion spans more than one line.
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* Consider a deletion of seven characters starting at Offset 1 shown previously in <u>Figure 3</u>.
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* In this case, the Element representing Line 2 is completely removed, as the
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* region it represents is contained in the deleted region.
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* The Elements representing Lines 1 and 3 are joined, as they are partially
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* contained in the deleted region. Thus, we have the result:
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* <p style="text-align:center"><img src="doc-files/plain5.gif"
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* alt="The preceding text describes this graphic.">
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*
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* <p><b>The Default StyledDocument Class</b>
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* <p>The <u>{@link javax.swing.text.DefaultStyledDocument}</u> class, used for styled text,
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* contains another level of Elements.
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* This extra level is needed so that each paragraph can contain different styles of text.
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* In the two paragraphs shown in <u>Figure 6</u>, the first paragraph contains
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* two styles and the second paragraph contains three styles.
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* <p style="text-align:center"><img src="doc-files/plain6.gif"
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* alt="The preceding text describes this graphic.">
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* <p><u>Figure 7</u> shows how those same Elements might map to content.
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* <p style="text-align:center"><img src="doc-files/plain7.gif"
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* alt="The preceding text describes this graphic.">
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*
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* <p><b>Inserting text into a DefaultStyledDocument</b>
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* <p>As previously mentioned, DefaultStyledDocument maintains an Element structure
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* such that the root Element
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* contains a child Element for each paragraph. In turn, each of these
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* paragraph Elements contains an Element for each style of text in the paragraph.
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* As an example, let's say you had a document containing one paragraph,
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* and that this paragraph contained two styles, as shown in <u>Figure 8</u>.
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* <p style="text-align:center"><img src="doc-files/plain8.gif"
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* alt="The preceding text describes this graphic.">
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* <p>If you then wanted to insert a newline at offset 2, you would again use the
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* method <code>insertString()</code>, as follows:
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*
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* <pre><code> styledDocument.insertString(2, "\n",
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styledDocument.getCharacterElement(0).getAttributes());</code></pre>
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* <p>This operation would have the result shown in <u>Figure 9</u>.
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* <p style="text-align:center"><img src="doc-files/plain9.gif"
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* alt="The preceding text describes this graphic.">
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* <p>It's important to note that the AttributeSet passed to <code>insertString()</code> matches
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* that of the attributes of Style 1. If the AttributeSet passed to <code>insertString()</code>
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* did not match, the result would be the situation shown in <u>Figure 10</u>.
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* <p style="text-align:center"><img src="doc-files/plain10.gif"
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* alt="The preceding text describes this graphic.">
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* <p><b>Removing text from a DefaultStyledDocument</b>
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* <p>Removing text from a DefaultStyledDocument is similar to removing text from
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* a PlainDocument. The only difference is the extra level of Elements.
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* Consider what would happen if you deleted two characters at Offset 1
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* from Figure 10, above. Since the the second Element of Paragraph 1 is
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* completely contained in the deleted region, it would be removed.
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* Assuming the attributes of Paragraph 1's first child matched those of
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* Paragraph2's first child, the results would be those shown in <u>Figure 11</u>.
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* <p style="text-align:center"><img src="doc-files/plain11.gif"
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* alt="The preceding text describes this graphic.">
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* <p>If the attributes did not match, we would get the results shown in <u>Figure 12</u>.
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* <p style="text-align:center"><img src="doc-files/plain12.gif"
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* alt="The preceding text describes this graphic.">
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*
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* <p><b>The StyledDocument Class</b>
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* <p>The <u>{@link javax.swing.text.StyledDocument}</u> class provides a method
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* named <code>setCharacterAttributes()</code>, which allows you to set the attributes
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* on the character Elements in a given range:
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* <pre><code> public void setCharacterAttributes
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* (int offset, int length, AttributeSet s, boolean replace);</code></pre>
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*
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* <p>Recall that in the diagrams shown in the previous section, all leaf Elements
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* shown in the drawings were also character Elements.
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* That means that the <code>setCharacterAttributes()</code> method could be used to set their attributes.
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* <p>The <code>setCharacterAttributes()</code> method takes four arguments .
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* The first and second arguments identify a region in the Document that is
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* to be changed. The third argument specifies the new attributes
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* (as an AttributeSet), and the fourth argument determines if the new attributes
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* should be added to the existing attributes (a value of false) or
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* if the character Element should replace its existing attributes
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* with the new attributes (a value of true).
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* <p>As an example, let's say you wanted to change the attributes of the
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* first three characters in <u>Figure 9</u>, shown previously.
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* The first two arguments passed to <code>setCharacterAttributes()</code> would be 0 and 3.
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* The third argument would be the AttributeSet containing the new attributes.
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* In the example we are considering, it doesn't matter what the fourth argument is.
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* <p>As the start and end offsets of the changed region (0 and 3) fall on
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* character Element boundaries, no structure change is needed.
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* That is, only the attributes of the character Element style 1 will change.
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* <p>Now let's look at an example that requires a structure change.
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* Instead of changing the first three characters shown in <u>Figure 9</u>,
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* let's change the first two characters.
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* Because the end change offset (2) does not fall on a character Element boundary,
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* the Element at offset 2 must be split in such a way
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* that offset 2 is the boundary of two Elements.
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* Invoking <code>setCharacterAttributes()</code> with a start offset of 0
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* and length of 2 has the result shown earlier in <u>Figure 10</u>.
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* <p><b>Changing Paragraph Attributes in a StyledDocument</b>
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* <p>The StyledDocument class provides a method named <code>setParagraphAttributes()</code>,
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* which can be used to change the attributes of a paragraph Element:
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* <pre><code> public void setParagraphAttributes
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* (int offset, int length, AttributeSet s, boolean replace);</code></pre>
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*
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* <p>This method is similar to <code>setCharacterAttributes()</code>,
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* but it allows you to change the attributes of paragraph Elements.
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* It is up to the implementation of a StyledDocument to define which Elements
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* are paragraphs. DefaultStyledDocument interprets paragraph Elements
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* to be the parent Element of the character Element.
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* Invoking this method does not result in a structure change;
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* only the attributes of the paragraph Element change.
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*
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* <p>It is recommended to look into {@link javax.swing.text.EditorKit} and
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* {@link javax.swing.text.View}.
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* View is responsible for rendering a particular Element, and
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* EditorKit is responsible for a ViewFactory that is able to decide what
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* View should be created based on an Element.
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*
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* @author Timothy Prinzing
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*
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* @see javax.swing.event.DocumentEvent
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* @see javax.swing.event.DocumentListener
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* @see javax.swing.event.UndoableEditEvent
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* @see javax.swing.event.UndoableEditListener
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* @see Element
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* @see Position
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* @see AttributeSet
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*/
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public interface Document {
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/**
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* Returns number of characters of content currently
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* in the document.
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*
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* @return number of characters >= 0
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*/
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public int getLength();
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/**
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* Registers the given observer to begin receiving notifications
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* when changes are made to the document.
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*
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* @param listener the observer to register
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* @see Document#removeDocumentListener
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*/
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public void addDocumentListener(DocumentListener listener);
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/**
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* Unregisters the given observer from the notification list
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* so it will no longer receive change updates.
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*
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* @param listener the observer to register
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* @see Document#addDocumentListener
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*/
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public void removeDocumentListener(DocumentListener listener);
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/**
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* Registers the given observer to begin receiving notifications
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* when undoable edits are made to the document.
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*
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* @param listener the observer to register
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* @see javax.swing.event.UndoableEditEvent
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*/
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public void addUndoableEditListener(UndoableEditListener listener);
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|
|
|
/**
|
|
* Unregisters the given observer from the notification list
|
|
* so it will no longer receive updates.
|
|
*
|
|
* @param listener the observer to register
|
|
* @see javax.swing.event.UndoableEditEvent
|
|
*/
|
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public void removeUndoableEditListener(UndoableEditListener listener);
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|
|
/**
|
|
* Gets the properties associated with the document.
|
|
*
|
|
* @param key a non-<code>null</code> property key
|
|
* @return the properties
|
|
* @see #putProperty(Object, Object)
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|
*/
|
|
public Object getProperty(Object key);
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|
|
|
/**
|
|
* Associates a property with the document. Two standard
|
|
* property keys provided are: <a href="#StreamDescriptionProperty">
|
|
* <code>StreamDescriptionProperty</code></a> and
|
|
* <a href="#TitleProperty"><code>TitleProperty</code></a>.
|
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* Other properties, such as author, may also be defined.
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*
|
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* @param key the non-<code>null</code> property key
|
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* @param value the property value
|
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* @see #getProperty(Object)
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|
*/
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|
public void putProperty(Object key, Object value);
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|
|
/**
|
|
* Removes a portion of the content of the document.
|
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* This will cause a DocumentEvent of type
|
|
* DocumentEvent.EventType.REMOVE to be sent to the
|
|
* registered DocumentListeners, unless an exception
|
|
* is thrown. The notification will be sent to the
|
|
* listeners by calling the removeUpdate method on the
|
|
* DocumentListeners.
|
|
* <p>
|
|
* To ensure reasonable behavior in the face
|
|
* of concurrency, the event is dispatched after the
|
|
* mutation has occurred. This means that by the time a
|
|
* notification of removal is dispatched, the document
|
|
* has already been updated and any marks created by
|
|
* <code>createPosition</code> have already changed.
|
|
* For a removal, the end of the removal range is collapsed
|
|
* down to the start of the range, and any marks in the removal
|
|
* range are collapsed down to the start of the range.
|
|
* <p style="text-align:center"><img src="doc-files/Document-remove.gif"
|
|
* alt="Diagram shows removal of 'quick' from 'The quick brown fox.'">
|
|
* <p>
|
|
* If the Document structure changed as result of the removal,
|
|
* the details of what Elements were inserted and removed in
|
|
* response to the change will also be contained in the generated
|
|
* DocumentEvent. It is up to the implementation of a Document
|
|
* to decide how the structure should change in response to a
|
|
* remove.
|
|
* <p>
|
|
* If the Document supports undo/redo, an UndoableEditEvent will
|
|
* also be generated.
|
|
*
|
|
* @param offs the offset from the beginning >= 0
|
|
* @param len the number of characters to remove >= 0
|
|
* @throws BadLocationException some portion of the removal range
|
|
* was not a valid part of the document. The location in the exception
|
|
* is the first bad position encountered.
|
|
* @see javax.swing.event.DocumentEvent
|
|
* @see javax.swing.event.DocumentListener
|
|
* @see javax.swing.event.UndoableEditEvent
|
|
* @see javax.swing.event.UndoableEditListener
|
|
*/
|
|
public void remove(int offs, int len) throws BadLocationException;
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|
|
|
/**
|
|
* Inserts a string of content. This will cause a DocumentEvent
|
|
* of type DocumentEvent.EventType.INSERT to be sent to the
|
|
* registered DocumentListers, unless an exception is thrown.
|
|
* The DocumentEvent will be delivered by calling the
|
|
* insertUpdate method on the DocumentListener.
|
|
* The offset and length of the generated DocumentEvent
|
|
* will indicate what change was actually made to the Document.
|
|
* <p style="text-align:center"><img src="doc-files/Document-insert.gif"
|
|
* alt="Diagram shows insertion of 'quick' in 'The quick brown fox'">
|
|
* <p>
|
|
* If the Document structure changed as result of the insertion,
|
|
* the details of what Elements were inserted and removed in
|
|
* response to the change will also be contained in the generated
|
|
* DocumentEvent. It is up to the implementation of a Document
|
|
* to decide how the structure should change in response to an
|
|
* insertion.
|
|
* <p>
|
|
* If the Document supports undo/redo, an UndoableEditEvent will
|
|
* also be generated.
|
|
*
|
|
* @param offset the offset into the document to insert the content >= 0.
|
|
* All positions that track change at or after the given location
|
|
* will move.
|
|
* @param str the string to insert
|
|
* @param a the attributes to associate with the inserted
|
|
* content. This may be null if there are no attributes.
|
|
* @throws BadLocationException the given insert position is not a valid
|
|
* position within the document
|
|
* @see javax.swing.event.DocumentEvent
|
|
* @see javax.swing.event.DocumentListener
|
|
* @see javax.swing.event.UndoableEditEvent
|
|
* @see javax.swing.event.UndoableEditListener
|
|
*/
|
|
public void insertString(int offset, String str, AttributeSet a) throws BadLocationException;
|
|
|
|
/**
|
|
* Fetches the text contained within the given portion
|
|
* of the document.
|
|
*
|
|
* @param offset the offset into the document representing the desired
|
|
* start of the text >= 0
|
|
* @param length the length of the desired string >= 0
|
|
* @return the text, in a String of length >= 0
|
|
* @throws BadLocationException some portion of the given range
|
|
* was not a valid part of the document. The location in the exception
|
|
* is the first bad position encountered.
|
|
*/
|
|
public String getText(int offset, int length) throws BadLocationException;
|
|
|
|
/**
|
|
* Fetches the text contained within the given portion
|
|
* of the document.
|
|
* <p>
|
|
* If the partialReturn property on the txt parameter is false, the
|
|
* data returned in the Segment will be the entire length requested and
|
|
* may or may not be a copy depending upon how the data was stored.
|
|
* If the partialReturn property is true, only the amount of text that
|
|
* can be returned without creating a copy is returned. Using partial
|
|
* returns will give better performance for situations where large
|
|
* parts of the document are being scanned. The following is an example
|
|
* of using the partial return to access the entire document:
|
|
*
|
|
* <pre><code>
|
|
*
|
|
* int nleft = doc.getDocumentLength();
|
|
* Segment text = new Segment();
|
|
* int offs = 0;
|
|
* text.setPartialReturn(true);
|
|
* while (nleft > 0) {
|
|
* doc.getText(offs, nleft, text);
|
|
* // do someting with text
|
|
* nleft -= text.count;
|
|
* offs += text.count;
|
|
* }
|
|
*
|
|
* </code></pre>
|
|
*
|
|
* @param offset the offset into the document representing the desired
|
|
* start of the text >= 0
|
|
* @param length the length of the desired string >= 0
|
|
* @param txt the Segment object to return the text in
|
|
*
|
|
* @throws BadLocationException Some portion of the given range
|
|
* was not a valid part of the document. The location in the exception
|
|
* is the first bad position encountered.
|
|
*/
|
|
public void getText(int offset, int length, Segment txt) throws BadLocationException;
|
|
|
|
/**
|
|
* Returns a position that represents the start of the document. The
|
|
* position returned can be counted on to track change and stay
|
|
* located at the beginning of the document.
|
|
*
|
|
* @return the position
|
|
*/
|
|
public Position getStartPosition();
|
|
|
|
/**
|
|
* Returns a position that represents the end of the document. The
|
|
* position returned can be counted on to track change and stay
|
|
* located at the end of the document.
|
|
*
|
|
* @return the position
|
|
*/
|
|
public Position getEndPosition();
|
|
|
|
/**
|
|
* This method allows an application to mark a place in
|
|
* a sequence of character content. This mark can then be
|
|
* used to tracks change as insertions and removals are made
|
|
* in the content. The policy is that insertions always
|
|
* occur prior to the current position (the most common case)
|
|
* unless the insertion location is zero, in which case the
|
|
* insertion is forced to a position that follows the
|
|
* original position.
|
|
*
|
|
* @param offs the offset from the start of the document >= 0
|
|
* @return the position
|
|
* @throws BadLocationException if the given position does not
|
|
* represent a valid location in the associated document
|
|
*/
|
|
public Position createPosition(int offs) throws BadLocationException;
|
|
|
|
/**
|
|
* Returns all of the root elements that are defined.
|
|
* <p>
|
|
* Typically there will be only one document structure, but the interface
|
|
* supports building an arbitrary number of structural projections over the
|
|
* text data. The document can have multiple root elements to support
|
|
* multiple document structures. Some examples might be:
|
|
* </p>
|
|
* <ul>
|
|
* <li>Text direction.
|
|
* <li>Lexical token streams.
|
|
* <li>Parse trees.
|
|
* <li>Conversions to formats other than the native format.
|
|
* <li>Modification specifications.
|
|
* <li>Annotations.
|
|
* </ul>
|
|
*
|
|
* @return the root element
|
|
*/
|
|
public Element[] getRootElements();
|
|
|
|
/**
|
|
* Returns the root element that views should be based upon,
|
|
* unless some other mechanism for assigning views to element
|
|
* structures is provided.
|
|
*
|
|
* @return the root element
|
|
*/
|
|
public Element getDefaultRootElement();
|
|
|
|
/**
|
|
* Allows the model to be safely rendered in the presence
|
|
* of concurrency, if the model supports being updated asynchronously.
|
|
* The given runnable will be executed in a way that allows it
|
|
* to safely read the model with no changes while the runnable
|
|
* is being executed. The runnable itself may <em>not</em>
|
|
* make any mutations.
|
|
*
|
|
* @param r a <code>Runnable</code> used to render the model
|
|
*/
|
|
public void render(Runnable r);
|
|
|
|
/**
|
|
* The property name for the description of the stream
|
|
* used to initialize the document. This should be used
|
|
* if the document was initialized from a stream and
|
|
* anything is known about the stream.
|
|
*/
|
|
public static final String StreamDescriptionProperty = "stream";
|
|
|
|
/**
|
|
* The property name for the title of the document, if
|
|
* there is one.
|
|
*/
|
|
public static final String TitleProperty = "title";
|
|
|
|
|
|
}
|