зеркало из https://github.com/mozilla/pjs.git
393 строки
14 KiB
C++
393 строки
14 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is Mozilla Communicator client code.
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*
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* The Initial Developer of the Original Code is
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* Netscape Communications Corporation.
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* Portions created by the Initial Developer are Copyright (C) 1998
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either of the GNU General Public License Version 2 or later (the "GPL"),
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* or the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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#ifndef nsTextTransformer_h___
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#define nsTextTransformer_h___
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#include "nsTextFragment.h"
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#include "nsISupports.h"
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#include "nsPresContext.h"
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#include "nsIObserver.h"
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#ifdef IBMBIDI
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#include "nsBidi.h"
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#include "nsBidiUtils.h"
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#endif
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class nsIContent;
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class nsIFrame;
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class nsILineBreaker;
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class nsIWordBreaker;
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// XXX I'm sure there are other special characters
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#define CH_NBSP 160
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#define CH_ENSP 8194 //<!ENTITY ensp CDATA " " -- en space, U+2002 ISOpub -->
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#define CH_EMSP 8195 //<!ENTITY emsp CDATA " " -- em space, U+2003 ISOpub -->
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#define CH_THINSP 8291 //<!ENTITY thinsp CDATA " " -- thin space, U+2009 ISOpub -->
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#define CH_ZWNJ 8204 //<!ENTITY zwnj CDATA "‌" -- zero width non-joiner, U+200C NEW RFC 2070
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#define CH_SHY 173
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#ifdef IBMBIDI
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#define CH_ZWJ 8205 //<!ENTITY zwj CDATA "‍" -- zero width joiner, U+200D NEW RFC 2070 -->
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#define CH_LRM 8206 //<!ENTITY lrm CDATA "‎" -- left-to-right mark, U+200E NEW RFC 2070 -->
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#define CH_RLM 8207 //<!ENTITY rlm CDATA "‏" -- right-to-left mark, U+200F NEW RFC 2070 -->
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#define CH_LRE 8234 //<!CDATA "‪" -- left-to-right embedding, U+202A -->
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#define CH_RLE 8235 //<!CDATA "‫" -- right-to-left embedding, U+202B -->
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#define CH_PDF 8236 //<!CDATA "‬" -- pop directional format, U+202C -->
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#define CH_LRO 8237 //<!CDATA "‭" -- left-to-right override, U+202D -->
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#define CH_RLO 8238 //<!CDATA "‮" -- right-to-left override, U+202E -->
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#define IS_BIDI_CONTROL(_ch) \
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(((_ch) >= CH_LRM && (_ch) <= CH_RLM) \
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|| ((_ch) >= CH_LRE && (_ch) <= CH_RLO))
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#endif // IBMBIDI
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// For now, we have only a couple of characters to strip out. If we get
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// any more, change this to use a bitset to lookup into.
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// CH_SHY - soft hyphen (discretionary hyphen)
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#ifdef IBMBIDI
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// added BIDI formatting codes
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#define IS_DISCARDED(_ch) \
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(((_ch) == CH_SHY) || ((_ch) == '\r') || IS_BIDI_CONTROL(_ch))
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#else
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#define IS_DISCARDED(_ch) \
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(((_ch) == CH_SHY) || ((_ch) == '\r'))
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#endif
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#define IS_ASCII_CHAR(ch) ((ch&0xff80) == 0)
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#define NS_TEXT_TRANSFORMER_AUTO_WORD_BUF_SIZE 128 // used to be 256
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// Indicates whether the transformed text should be left as ascii
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#define NS_TEXT_TRANSFORMER_LEAVE_AS_ASCII 1
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// If at any point during GetNextWord or GetPrevWord we
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// run across a multibyte (> 127) unicode character.
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#define NS_TEXT_TRANSFORMER_HAS_MULTIBYTE 2
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// The text in the transform buffer is ascii
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#define NS_TEXT_TRANSFORMER_TRANSFORMED_TEXT_IS_ASCII 4
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#ifdef IBMBIDI
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// The text in the transform buffer needs Arabic shaping
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#define NS_TEXT_TRANSFORMER_DO_ARABIC_SHAPING 8
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// The text in the transform buffer needs numeric shaping
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#define NS_TEXT_TRANSFORMER_DO_NUMERIC_SHAPING 16
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#endif
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// A growable text buffer that tries to avoid using malloc by having a
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// builtin buffer. Ideally used as an automatic variable.
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class nsAutoTextBuffer {
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public:
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nsAutoTextBuffer();
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~nsAutoTextBuffer();
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nsresult GrowBy(PRInt32 aAtLeast, PRBool aCopyToHead = PR_TRUE);
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nsresult GrowTo(PRInt32 aNewSize, PRBool aCopyToHead = PR_TRUE);
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PRUnichar* GetBuffer() { return mBuffer; }
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PRUnichar* GetBufferEnd() { return mBuffer + mBufferLen; }
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PRInt32 GetBufferLength() const { return mBufferLen; }
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PRUnichar* mBuffer;
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PRInt32 mBufferLen;
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PRUnichar mAutoBuffer[NS_TEXT_TRANSFORMER_AUTO_WORD_BUF_SIZE];
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};
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//----------------------------------------
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/**
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* This object manages the transformation of text:
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*
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* <UL>
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* <LI>whitespace compression
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* <LI>capitalization
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* <LI>lowercasing
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* <LI>uppercasing
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* <LI>ascii to Unicode (if requested)
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* <LI>discarded characters
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* <LI>conversion of   that is not part of whitespace into a space
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* <LI>tab and newline characters to space (normal text only)
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* </UL>
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*
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* Note that no transformations are applied that would impact word
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* breaking (like mapping into space, for example). In
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* addition, this logic will not strip leading or trailing whitespace
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* (across the entire run of text; leading whitespace can be skipped
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* for a frames text because of whitespace compression).
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*/
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class nsTextTransformer {
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public:
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// Note: The text transformer does not hold a reference to the line
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// breaker and work breaker objects
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nsTextTransformer(nsILineBreaker* aLineBreaker,
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nsIWordBreaker* aWordBreaker,
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nsPresContext* aPresContext);
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~nsTextTransformer();
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/**
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* Initialize the text transform. Use GetNextWord() and GetPrevWord()
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* to iterate the text
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*
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* The default is to transform all text to Unicode; however, you can
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* specify that the text should be left as ascii if possible. Note that
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* we don't step the text down from Unicode to ascii (even if it doesn't
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* contain multibyte characters) so this only happens for text fragments
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* that contain 1-byte text.
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* XXX This is currently not implemented for GetPreviousWord()
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* @see TransformedTextIsAscii()
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*/
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nsresult Init(nsIFrame* aFrame,
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nsIContent* aContent,
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PRInt32 aStartingOffset,
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PRBool aForceArabicShaping = PR_FALSE,
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PRBool aLeaveAsAscii = PR_FALSE);
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PRInt32 GetContentLength() const {
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return mFrag ? mFrag->GetLength() : 0;
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}
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PRUnichar GetContentCharAt(PRInt32 aIndex) {
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return (mFrag && aIndex < mFrag->GetLength()) ? mFrag->CharAt(aIndex) : 0;
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}
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/**
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* Iterates the next word in the text fragment.
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*
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* Returns a pointer to the word, the number of characters in the word, the
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* content length of the word, whether it is whitespace, and whether the
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* text was transformed (any of the transformations listed above). The content
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* length can be greater than the word length if whitespace compression occured
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* or if characters were discarded
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*
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* The default behavior is to reset the transform buffer to the beginning,
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* but you can choose to not reste it and buffer across multiple words
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*/
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PRUnichar* GetNextWord(PRBool aInWord,
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PRInt32* aWordLenResult,
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PRInt32* aContentLenResult,
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PRBool* aIsWhitespaceResult,
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PRBool* aWasTransformed,
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PRBool aResetTransformBuf = PR_TRUE,
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PRBool aForLineBreak = PR_TRUE,
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PRBool aIsKeyboardSelect = PR_FALSE);
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PRUnichar* GetPrevWord(PRBool aInWord,
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PRInt32* aWordLenResult,
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PRInt32* aContentLenResult,
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PRBool* aIsWhitespaceResult,
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PRBool aForLineBreak = PR_TRUE,
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PRBool aIsKeyboardSelect = PR_FALSE);
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// Returns PR_TRUE if the LEAVE_AS_ASCII flag is set
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PRBool LeaveAsAscii() const {
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return (mFlags & NS_TEXT_TRANSFORMER_LEAVE_AS_ASCII) != 0;
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}
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// Returns PR_TRUE if any of the characters are multibyte (greater than 127)
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PRBool HasMultibyte() const {
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return (mFlags & NS_TEXT_TRANSFORMER_HAS_MULTIBYTE) != 0;
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}
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// Returns PR_TRUE if the text in the transform bufer is ascii (i.e., it
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// doesn't contain any multibyte characters)
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PRBool TransformedTextIsAscii() const {
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return (mFlags & NS_TEXT_TRANSFORMER_TRANSFORMED_TEXT_IS_ASCII) != 0;
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}
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#ifdef IBMBIDI
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// Returns PR_TRUE if the text in the transform bufer needs Arabic
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// shaping
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PRBool NeedsArabicShaping() const {
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return (mFlags & NS_TEXT_TRANSFORMER_DO_ARABIC_SHAPING) != 0;
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}
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// Returns PR_TRUE if the text in the transform bufer needs numeric
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// shaping
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PRBool NeedsNumericShaping() const {
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return (mFlags & NS_TEXT_TRANSFORMER_DO_NUMERIC_SHAPING) != 0;
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}
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#endif
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// Set or clears the LEAVE_AS_ASCII bit
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void SetLeaveAsAscii(PRBool aValue) {
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aValue ? mFlags |= NS_TEXT_TRANSFORMER_LEAVE_AS_ASCII :
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mFlags &= (~NS_TEXT_TRANSFORMER_LEAVE_AS_ASCII);
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}
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// Set or clears the NS_TEXT_TRANSFORMER_HAS_MULTIBYTE bit
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void SetHasMultibyte(PRBool aValue) {
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aValue ? mFlags |= NS_TEXT_TRANSFORMER_HAS_MULTIBYTE :
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mFlags &= (~NS_TEXT_TRANSFORMER_HAS_MULTIBYTE);
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}
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// Set or clears the NS_TEXT_TRANSFORMER_TRANSFORMED_TEXT_IS_ASCII bit
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void SetTransformedTextIsAscii(PRBool aValue) {
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aValue ? mFlags |= NS_TEXT_TRANSFORMER_TRANSFORMED_TEXT_IS_ASCII :
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mFlags &= (~NS_TEXT_TRANSFORMER_TRANSFORMED_TEXT_IS_ASCII);
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}
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#ifdef IBMBIDI
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// Set or clears the NS_TEXT_TRANSFORMER_TRANSFORMED_DO_ARABIC_SHAPING bit
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void SetNeedsArabicShaping(PRBool aValue) {
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aValue ? mFlags |= NS_TEXT_TRANSFORMER_DO_ARABIC_SHAPING :
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mFlags &= (~NS_TEXT_TRANSFORMER_DO_ARABIC_SHAPING);
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}
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// Set or clears the NS_TEXT_TRANSFORMER_TRANSFORMED_DO_NUMERIC_SHAPING bit
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void SetNeedsNumericShaping(PRBool aValue) {
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aValue ? mFlags |= NS_TEXT_TRANSFORMER_DO_NUMERIC_SHAPING :
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mFlags &= (~NS_TEXT_TRANSFORMER_DO_NUMERIC_SHAPING);
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}
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#endif
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PRUnichar* GetWordBuffer() {
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return mTransformBuf.GetBuffer();
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}
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PRInt32 GetWordBufferLength() const {
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return mTransformBuf.GetBufferLength();
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}
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PRBool GetWordSelectEatSpaceAfter() {
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return sWordSelectEatSpaceAfter;
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}
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PRBool GetWordSelectStopAtPunctuation() {
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return sWordSelectStopAtPunctuation;
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}
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static nsresult Initialize();
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static void Shutdown();
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protected:
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// Helper methods for GetNextWord (F == forwards)
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PRInt32 ScanNormalWhiteSpace_F();
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PRInt32 ScanNormalAsciiText_F(PRInt32* aWordLen,
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PRBool* aWasTransformed);
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PRInt32 ScanNormalAsciiText_F_ForWordBreak(PRInt32* aWordLen,
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PRBool* aWasTransformed,
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PRBool aIsKeyboardSelect);
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PRInt32 ScanNormalUnicodeText_F(PRBool aForLineBreak,
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PRInt32* aWordLen,
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PRBool* aWasTransformed);
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PRInt32 ScanPreWrapWhiteSpace_F(PRInt32* aWordLen);
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PRInt32 ScanPreAsciiData_F(PRInt32* aWordLen,
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PRBool* aWasTransformed);
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PRInt32 ScanPreData_F(PRInt32* aWordLen,
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PRBool* aWasTransformed);
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// Helper methods for GetPrevWord (B == backwards)
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PRInt32 ScanNormalWhiteSpace_B();
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PRInt32 ScanNormalAsciiText_B(PRInt32* aWordLen, PRBool aIsKeyboardSelect);
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PRInt32 ScanNormalUnicodeText_B(PRBool aForLineBreak, PRInt32* aWordLen);
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PRInt32 ScanPreWrapWhiteSpace_B(PRInt32* aWordLen);
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PRInt32 ScanPreData_B(PRInt32* aWordLen);
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// Converts the current text in the transform buffer from ascii to
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// Unicode
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void ConvertTransformedTextToUnicode();
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void LanguageSpecificTransform(PRUnichar* aText, PRInt32 aLen,
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PRBool* aWasTransformed);
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void DoArabicShaping(PRUnichar* aText, PRInt32& aTextLength, PRBool* aWasTransformed);
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void DoNumericShaping(PRUnichar* aText, PRInt32& aTextLength, PRBool* aWasTransformed);
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void StripZeroWidthJoinControls(PRUnichar* aSource, PRUnichar* aTarget, PRInt32& aTextLength, PRBool* aWasTransformed);
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// The text fragment that we are looking at
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const nsTextFragment* mFrag;
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// Our current offset into the text fragment
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PRInt32 mOffset;
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// The frame's white-space mode we are using to process text
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enum {
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eNormal,
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ePreformatted,
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ePreWrap
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} mMode;
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nsILineBreaker* mLineBreaker; // [WEAK]
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nsIWordBreaker* mWordBreaker; // [WEAK]
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nsLanguageSpecificTransformType mLanguageSpecificTransformType;
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#ifdef IBMBIDI
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nsPresContext* mPresContext;
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nsCharType mCharType;
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#endif
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// Buffer used to hold the transformed words from GetNextWord or
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// GetPrevWord
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nsAutoTextBuffer mTransformBuf;
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// Our current position within the buffer. Used when iterating the next
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// word, because we may be requested to buffer across multiple words
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PRInt32 mBufferPos;
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// The frame's text-transform state
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PRUint8 mTextTransform;
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// Flag for controling mLeaveAsAscii, mHasMultibyte, mTransformedTextIsAscii
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PRUint8 mFlags;
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// prefs used to configure the double-click word selection behavior
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static int WordSelectPrefCallback(const char* aPref, void* aClosure);
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static PRBool sWordSelectListenerPrefChecked; // have we read the prefs yet?
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static PRBool sWordSelectEatSpaceAfter; // should we include whitespace up to next word?
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static PRBool sWordSelectStopAtPunctuation; // should we stop at punctuation?
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#ifdef DEBUG
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static void SelfTest(nsILineBreaker* aLineBreaker,
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nsIWordBreaker* aWordBreaker,
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nsPresContext* aPresContext);
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nsresult Init2(const nsTextFragment* aFrag,
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PRInt32 aStartingOffset,
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PRUint8 aWhiteSpace,
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PRUint8 aTextTransform);
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#endif
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};
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#endif /* nsTextTransformer_h___ */
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