michael@0: /* michael@0: * Copyright (c) 2005-2007 Henri Sivonen michael@0: * Copyright (c) 2007-2013 Mozilla Foundation michael@0: * Portions of comments Copyright 2004-2010 Apple Computer, Inc., Mozilla michael@0: * Foundation, and Opera Software ASA. michael@0: * michael@0: * Permission is hereby granted, free of charge, to any person obtaining a michael@0: * copy of this software and associated documentation files (the "Software"), michael@0: * to deal in the Software without restriction, including without limitation michael@0: * the rights to use, copy, modify, merge, publish, distribute, sublicense, michael@0: * and/or sell copies of the Software, and to permit persons to whom the michael@0: * Software is furnished to do so, subject to the following conditions: michael@0: * michael@0: * The above copyright notice and this permission notice shall be included in michael@0: * all copies or substantial portions of the Software. michael@0: * michael@0: * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR michael@0: * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, michael@0: * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL michael@0: * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER michael@0: * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING michael@0: * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER michael@0: * DEALINGS IN THE SOFTWARE. michael@0: */ michael@0: michael@0: /* michael@0: * The comments following this one that use the same comment syntax as this michael@0: * comment are quotes from the WHATWG HTML 5 spec as of 2 June 2007 michael@0: * amended as of June 18 2008 and May 31 2010. michael@0: * That document came with this statement: michael@0: * "© Copyright 2004-2010 Apple Computer, Inc., Mozilla Foundation, and michael@0: * Opera Software ASA. You are granted a license to use, reproduce and michael@0: * create derivative works of this document." michael@0: */ michael@0: michael@0: package nu.validator.htmlparser.impl; michael@0: michael@0: import nu.validator.htmlparser.annotation.Auto; michael@0: import nu.validator.htmlparser.annotation.CharacterName; michael@0: import nu.validator.htmlparser.annotation.Const; michael@0: import nu.validator.htmlparser.annotation.Inline; michael@0: import nu.validator.htmlparser.annotation.Local; michael@0: import nu.validator.htmlparser.annotation.NoLength; michael@0: import nu.validator.htmlparser.common.EncodingDeclarationHandler; michael@0: import nu.validator.htmlparser.common.Interner; michael@0: import nu.validator.htmlparser.common.TokenHandler; michael@0: import nu.validator.htmlparser.common.XmlViolationPolicy; michael@0: michael@0: import org.xml.sax.ErrorHandler; michael@0: import org.xml.sax.Locator; michael@0: import org.xml.sax.SAXException; michael@0: import org.xml.sax.SAXParseException; michael@0: michael@0: /** michael@0: * An implementation of michael@0: * http://www.whatwg.org/specs/web-apps/current-work/multipage/tokenization.html michael@0: * michael@0: * This class implements the Locator interface. This is not an michael@0: * incidental implementation detail: Users of this class are encouraged to make michael@0: * use of the Locator nature. michael@0: * michael@0: * By default, the tokenizer may report data that XML 1.0 bans. The tokenizer michael@0: * can be configured to treat these conditions as fatal or to coerce the infoset michael@0: * to something that XML 1.0 allows. michael@0: * michael@0: * @version $Id$ michael@0: * @author hsivonen michael@0: */ michael@0: public class Tokenizer implements Locator { michael@0: michael@0: private static final int DATA_AND_RCDATA_MASK = ~1; michael@0: michael@0: public static final int DATA = 0; michael@0: michael@0: public static final int RCDATA = 1; michael@0: michael@0: public static final int SCRIPT_DATA = 2; michael@0: michael@0: public static final int RAWTEXT = 3; michael@0: michael@0: public static final int SCRIPT_DATA_ESCAPED = 4; michael@0: michael@0: public static final int ATTRIBUTE_VALUE_DOUBLE_QUOTED = 5; michael@0: michael@0: public static final int ATTRIBUTE_VALUE_SINGLE_QUOTED = 6; michael@0: michael@0: public static final int ATTRIBUTE_VALUE_UNQUOTED = 7; michael@0: michael@0: public static final int PLAINTEXT = 8; michael@0: michael@0: public static final int TAG_OPEN = 9; michael@0: michael@0: public static final int CLOSE_TAG_OPEN = 10; michael@0: michael@0: public static final int TAG_NAME = 11; michael@0: michael@0: public static final int BEFORE_ATTRIBUTE_NAME = 12; michael@0: michael@0: public static final int ATTRIBUTE_NAME = 13; michael@0: michael@0: public static final int AFTER_ATTRIBUTE_NAME = 14; michael@0: michael@0: public static final int BEFORE_ATTRIBUTE_VALUE = 15; michael@0: michael@0: public static final int AFTER_ATTRIBUTE_VALUE_QUOTED = 16; michael@0: michael@0: public static final int BOGUS_COMMENT = 17; michael@0: michael@0: public static final int MARKUP_DECLARATION_OPEN = 18; michael@0: michael@0: public static final int DOCTYPE = 19; michael@0: michael@0: public static final int BEFORE_DOCTYPE_NAME = 20; michael@0: michael@0: public static final int DOCTYPE_NAME = 21; michael@0: michael@0: public static final int AFTER_DOCTYPE_NAME = 22; michael@0: michael@0: public static final int BEFORE_DOCTYPE_PUBLIC_IDENTIFIER = 23; michael@0: michael@0: public static final int DOCTYPE_PUBLIC_IDENTIFIER_DOUBLE_QUOTED = 24; michael@0: michael@0: public static final int DOCTYPE_PUBLIC_IDENTIFIER_SINGLE_QUOTED = 25; michael@0: michael@0: public static final int AFTER_DOCTYPE_PUBLIC_IDENTIFIER = 26; michael@0: michael@0: public static final int BEFORE_DOCTYPE_SYSTEM_IDENTIFIER = 27; michael@0: michael@0: public static final int DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED = 28; michael@0: michael@0: public static final int DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED = 29; michael@0: michael@0: public static final int AFTER_DOCTYPE_SYSTEM_IDENTIFIER = 30; michael@0: michael@0: public static final int BOGUS_DOCTYPE = 31; michael@0: michael@0: public static final int COMMENT_START = 32; michael@0: michael@0: public static final int COMMENT_START_DASH = 33; michael@0: michael@0: public static final int COMMENT = 34; michael@0: michael@0: public static final int COMMENT_END_DASH = 35; michael@0: michael@0: public static final int COMMENT_END = 36; michael@0: michael@0: public static final int COMMENT_END_BANG = 37; michael@0: michael@0: public static final int NON_DATA_END_TAG_NAME = 38; michael@0: michael@0: public static final int MARKUP_DECLARATION_HYPHEN = 39; michael@0: michael@0: public static final int MARKUP_DECLARATION_OCTYPE = 40; michael@0: michael@0: public static final int DOCTYPE_UBLIC = 41; michael@0: michael@0: public static final int DOCTYPE_YSTEM = 42; michael@0: michael@0: public static final int AFTER_DOCTYPE_PUBLIC_KEYWORD = 43; michael@0: michael@0: public static final int BETWEEN_DOCTYPE_PUBLIC_AND_SYSTEM_IDENTIFIERS = 44; michael@0: michael@0: public static final int AFTER_DOCTYPE_SYSTEM_KEYWORD = 45; michael@0: michael@0: public static final int CONSUME_CHARACTER_REFERENCE = 46; michael@0: michael@0: public static final int CONSUME_NCR = 47; michael@0: michael@0: public static final int CHARACTER_REFERENCE_TAIL = 48; michael@0: michael@0: public static final int HEX_NCR_LOOP = 49; michael@0: michael@0: public static final int DECIMAL_NRC_LOOP = 50; michael@0: michael@0: public static final int HANDLE_NCR_VALUE = 51; michael@0: michael@0: public static final int HANDLE_NCR_VALUE_RECONSUME = 52; michael@0: michael@0: public static final int CHARACTER_REFERENCE_HILO_LOOKUP = 53; michael@0: michael@0: public static final int SELF_CLOSING_START_TAG = 54; michael@0: michael@0: public static final int CDATA_START = 55; michael@0: michael@0: public static final int CDATA_SECTION = 56; michael@0: michael@0: public static final int CDATA_RSQB = 57; michael@0: michael@0: public static final int CDATA_RSQB_RSQB = 58; michael@0: michael@0: public static final int SCRIPT_DATA_LESS_THAN_SIGN = 59; michael@0: michael@0: public static final int SCRIPT_DATA_ESCAPE_START = 60; michael@0: michael@0: public static final int SCRIPT_DATA_ESCAPE_START_DASH = 61; michael@0: michael@0: public static final int SCRIPT_DATA_ESCAPED_DASH = 62; michael@0: michael@0: public static final int SCRIPT_DATA_ESCAPED_DASH_DASH = 63; michael@0: michael@0: public static final int BOGUS_COMMENT_HYPHEN = 64; michael@0: michael@0: public static final int RAWTEXT_RCDATA_LESS_THAN_SIGN = 65; michael@0: michael@0: public static final int SCRIPT_DATA_ESCAPED_LESS_THAN_SIGN = 66; michael@0: michael@0: public static final int SCRIPT_DATA_DOUBLE_ESCAPE_START = 67; michael@0: michael@0: public static final int SCRIPT_DATA_DOUBLE_ESCAPED = 68; michael@0: michael@0: public static final int SCRIPT_DATA_DOUBLE_ESCAPED_LESS_THAN_SIGN = 69; michael@0: michael@0: public static final int SCRIPT_DATA_DOUBLE_ESCAPED_DASH = 70; michael@0: michael@0: public static final int SCRIPT_DATA_DOUBLE_ESCAPED_DASH_DASH = 71; michael@0: michael@0: public static final int SCRIPT_DATA_DOUBLE_ESCAPE_END = 72; michael@0: michael@0: public static final int PROCESSING_INSTRUCTION = 73; michael@0: michael@0: public static final int PROCESSING_INSTRUCTION_QUESTION_MARK = 74; michael@0: michael@0: /** michael@0: * Magic value for UTF-16 operations. michael@0: */ michael@0: private static final int LEAD_OFFSET = (0xD800 - (0x10000 >> 10)); michael@0: michael@0: /** michael@0: * UTF-16 code unit array containing less than and greater than for emitting michael@0: * those characters on certain parse errors. michael@0: */ michael@0: private static final @NoLength char[] LT_GT = { '<', '>' }; michael@0: michael@0: /** michael@0: * UTF-16 code unit array containing less than and solidus for emitting michael@0: * those characters on certain parse errors. michael@0: */ michael@0: private static final @NoLength char[] LT_SOLIDUS = { '<', '/' }; michael@0: michael@0: /** michael@0: * UTF-16 code unit array containing ]] for emitting those characters on michael@0: * state transitions. michael@0: */ michael@0: private static final @NoLength char[] RSQB_RSQB = { ']', ']' }; michael@0: michael@0: /** michael@0: * Array version of U+FFFD. michael@0: */ michael@0: private static final @NoLength char[] REPLACEMENT_CHARACTER = { '\uFFFD' }; michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * Array version of space. michael@0: */ michael@0: private static final @NoLength char[] SPACE = { ' ' }; michael@0: michael@0: // ]NOCPP] michael@0: michael@0: /** michael@0: * Array version of line feed. michael@0: */ michael@0: private static final @NoLength char[] LF = { '\n' }; michael@0: michael@0: /** michael@0: * Buffer growth parameter. michael@0: */ michael@0: private static final int BUFFER_GROW_BY = 1024; michael@0: michael@0: /** michael@0: * "CDATA[" as char[] michael@0: */ michael@0: private static final @NoLength char[] CDATA_LSQB = { 'C', 'D', 'A', 'T', michael@0: 'A', '[' }; michael@0: michael@0: /** michael@0: * "octype" as char[] michael@0: */ michael@0: private static final @NoLength char[] OCTYPE = { 'o', 'c', 't', 'y', 'p', michael@0: 'e' }; michael@0: michael@0: /** michael@0: * "ublic" as char[] michael@0: */ michael@0: private static final @NoLength char[] UBLIC = { 'u', 'b', 'l', 'i', 'c' }; michael@0: michael@0: /** michael@0: * "ystem" as char[] michael@0: */ michael@0: private static final @NoLength char[] YSTEM = { 'y', 's', 't', 'e', 'm' }; michael@0: michael@0: private static final char[] TITLE_ARR = { 't', 'i', 't', 'l', 'e' }; michael@0: michael@0: private static final char[] SCRIPT_ARR = { 's', 'c', 'r', 'i', 'p', 't' }; michael@0: michael@0: private static final char[] STYLE_ARR = { 's', 't', 'y', 'l', 'e' }; michael@0: michael@0: private static final char[] PLAINTEXT_ARR = { 'p', 'l', 'a', 'i', 'n', 't', michael@0: 'e', 'x', 't' }; michael@0: michael@0: private static final char[] XMP_ARR = { 'x', 'm', 'p' }; michael@0: michael@0: private static final char[] TEXTAREA_ARR = { 't', 'e', 'x', 't', 'a', 'r', michael@0: 'e', 'a' }; michael@0: michael@0: private static final char[] IFRAME_ARR = { 'i', 'f', 'r', 'a', 'm', 'e' }; michael@0: michael@0: private static final char[] NOEMBED_ARR = { 'n', 'o', 'e', 'm', 'b', 'e', michael@0: 'd' }; michael@0: michael@0: private static final char[] NOSCRIPT_ARR = { 'n', 'o', 's', 'c', 'r', 'i', michael@0: 'p', 't' }; michael@0: michael@0: private static final char[] NOFRAMES_ARR = { 'n', 'o', 'f', 'r', 'a', 'm', michael@0: 'e', 's' }; michael@0: michael@0: /** michael@0: * The token handler. michael@0: */ michael@0: protected final TokenHandler tokenHandler; michael@0: michael@0: protected EncodingDeclarationHandler encodingDeclarationHandler; michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * The error handler. michael@0: */ michael@0: protected ErrorHandler errorHandler; michael@0: michael@0: // ]NOCPP] michael@0: michael@0: /** michael@0: * Whether the previous char read was CR. michael@0: */ michael@0: protected boolean lastCR; michael@0: michael@0: protected int stateSave; michael@0: michael@0: private int returnStateSave; michael@0: michael@0: protected int index; michael@0: michael@0: private boolean forceQuirks; michael@0: michael@0: private char additional; michael@0: michael@0: private int entCol; michael@0: michael@0: private int firstCharKey; michael@0: michael@0: private int lo; michael@0: michael@0: private int hi; michael@0: michael@0: private int candidate; michael@0: michael@0: private int strBufMark; michael@0: michael@0: private int prevValue; michael@0: michael@0: protected int value; michael@0: michael@0: private boolean seenDigits; michael@0: michael@0: protected int cstart; michael@0: michael@0: /** michael@0: * The SAX public id for the resource being tokenized. (Only passed to back michael@0: * as part of locator data.) michael@0: */ michael@0: private String publicId; michael@0: michael@0: /** michael@0: * The SAX system id for the resource being tokenized. (Only passed to back michael@0: * as part of locator data.) michael@0: */ michael@0: private String systemId; michael@0: michael@0: /** michael@0: * Buffer for short identifiers. michael@0: */ michael@0: private @Auto char[] strBuf; michael@0: michael@0: /** michael@0: * Number of significant chars in strBuf. michael@0: */ michael@0: private int strBufLen; michael@0: michael@0: /** michael@0: * -1 to indicate that strBuf is used or otherwise michael@0: * an offset to the main buffer. michael@0: */ michael@0: // private int strBufOffset = -1; michael@0: /** michael@0: * Buffer for long strings. michael@0: */ michael@0: private @Auto char[] longStrBuf; michael@0: michael@0: /** michael@0: * Number of significant chars in longStrBuf. michael@0: */ michael@0: private int longStrBufLen; michael@0: michael@0: /** michael@0: * -1 to indicate that longStrBuf is used or michael@0: * otherwise an offset to the main buffer. michael@0: */ michael@0: // private int longStrBufOffset = -1; michael@0: michael@0: /** michael@0: * Buffer for expanding NCRs falling into the Basic Multilingual Plane. michael@0: */ michael@0: private final @Auto char[] bmpChar; michael@0: michael@0: /** michael@0: * Buffer for expanding astral NCRs. michael@0: */ michael@0: private final @Auto char[] astralChar; michael@0: michael@0: /** michael@0: * The element whose end tag closes the current CDATA or RCDATA element. michael@0: */ michael@0: protected ElementName endTagExpectation = null; michael@0: michael@0: private char[] endTagExpectationAsArray; // not @Auto! michael@0: michael@0: /** michael@0: * true if tokenizing an end tag michael@0: */ michael@0: protected boolean endTag; michael@0: michael@0: /** michael@0: * The current tag token name. michael@0: */ michael@0: private ElementName tagName = null; michael@0: michael@0: /** michael@0: * The current attribute name. michael@0: */ michael@0: protected AttributeName attributeName = null; michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * Whether comment tokens are emitted. michael@0: */ michael@0: private boolean wantsComments = false; michael@0: michael@0: /** michael@0: * true when HTML4-specific additional errors are requested. michael@0: */ michael@0: protected boolean html4; michael@0: michael@0: /** michael@0: * Whether the stream is past the first 512 bytes. michael@0: */ michael@0: private boolean metaBoundaryPassed; michael@0: michael@0: // ]NOCPP] michael@0: michael@0: /** michael@0: * The name of the current doctype token. michael@0: */ michael@0: private @Local String doctypeName; michael@0: michael@0: /** michael@0: * The public id of the current doctype token. michael@0: */ michael@0: private String publicIdentifier; michael@0: michael@0: /** michael@0: * The system id of the current doctype token. michael@0: */ michael@0: private String systemIdentifier; michael@0: michael@0: /** michael@0: * The attribute holder. michael@0: */ michael@0: private HtmlAttributes attributes; michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * The policy for vertical tab and form feed. michael@0: */ michael@0: private XmlViolationPolicy contentSpacePolicy = XmlViolationPolicy.ALTER_INFOSET; michael@0: michael@0: /** michael@0: * The policy for comments. michael@0: */ michael@0: private XmlViolationPolicy commentPolicy = XmlViolationPolicy.ALTER_INFOSET; michael@0: michael@0: private XmlViolationPolicy xmlnsPolicy = XmlViolationPolicy.ALTER_INFOSET; michael@0: michael@0: private XmlViolationPolicy namePolicy = XmlViolationPolicy.ALTER_INFOSET; michael@0: michael@0: private boolean html4ModeCompatibleWithXhtml1Schemata; michael@0: michael@0: private int mappingLangToXmlLang; michael@0: michael@0: // ]NOCPP] michael@0: michael@0: private final boolean newAttributesEachTime; michael@0: michael@0: private boolean shouldSuspend; michael@0: michael@0: protected boolean confident; michael@0: michael@0: private int line; michael@0: michael@0: private Interner interner; michael@0: michael@0: // CPPONLY: private boolean viewingXmlSource; michael@0: michael@0: // [NOCPP[ michael@0: michael@0: protected LocatorImpl ampersandLocation; michael@0: michael@0: public Tokenizer(TokenHandler tokenHandler, boolean newAttributesEachTime) { michael@0: this.tokenHandler = tokenHandler; michael@0: this.encodingDeclarationHandler = null; michael@0: this.newAttributesEachTime = newAttributesEachTime; michael@0: this.bmpChar = new char[1]; michael@0: this.astralChar = new char[2]; michael@0: this.tagName = null; michael@0: this.attributeName = null; michael@0: this.doctypeName = null; michael@0: this.publicIdentifier = null; michael@0: this.systemIdentifier = null; michael@0: this.attributes = null; michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: /** michael@0: * The constructor. michael@0: * michael@0: * @param tokenHandler michael@0: * the handler for receiving tokens michael@0: */ michael@0: public Tokenizer(TokenHandler tokenHandler michael@0: // CPPONLY: , boolean viewingXmlSource michael@0: ) { michael@0: this.tokenHandler = tokenHandler; michael@0: this.encodingDeclarationHandler = null; michael@0: // [NOCPP[ michael@0: this.newAttributesEachTime = false; michael@0: // ]NOCPP] michael@0: this.bmpChar = new char[1]; michael@0: this.astralChar = new char[2]; michael@0: this.tagName = null; michael@0: this.attributeName = null; michael@0: this.doctypeName = null; michael@0: this.publicIdentifier = null; michael@0: this.systemIdentifier = null; michael@0: // [NOCPP[ michael@0: this.attributes = null; michael@0: // ]NOCPP] michael@0: // CPPONLY: this.attributes = tokenHandler.HasBuilder() ? new HtmlAttributes(mappingLangToXmlLang) : null; michael@0: // CPPONLY: this.newAttributesEachTime = !tokenHandler.HasBuilder(); michael@0: // CPPONLY: this.viewingXmlSource = viewingXmlSource; michael@0: } michael@0: michael@0: public void setInterner(Interner interner) { michael@0: this.interner = interner; michael@0: } michael@0: michael@0: public void initLocation(String newPublicId, String newSystemId) { michael@0: this.systemId = newSystemId; michael@0: this.publicId = newPublicId; michael@0: michael@0: } michael@0: michael@0: // CPPONLY: boolean isViewingXmlSource() { michael@0: // CPPONLY: return viewingXmlSource; michael@0: // CPPONLY: } michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * Returns the mappingLangToXmlLang. michael@0: * michael@0: * @return the mappingLangToXmlLang michael@0: */ michael@0: public boolean isMappingLangToXmlLang() { michael@0: return mappingLangToXmlLang == AttributeName.HTML_LANG; michael@0: } michael@0: michael@0: /** michael@0: * Sets the mappingLangToXmlLang. michael@0: * michael@0: * @param mappingLangToXmlLang michael@0: * the mappingLangToXmlLang to set michael@0: */ michael@0: public void setMappingLangToXmlLang(boolean mappingLangToXmlLang) { michael@0: this.mappingLangToXmlLang = mappingLangToXmlLang ? AttributeName.HTML_LANG michael@0: : AttributeName.HTML; michael@0: } michael@0: michael@0: /** michael@0: * Sets the error handler. michael@0: * michael@0: * @see org.xml.sax.XMLReader#setErrorHandler(org.xml.sax.ErrorHandler) michael@0: */ michael@0: public void setErrorHandler(ErrorHandler eh) { michael@0: this.errorHandler = eh; michael@0: } michael@0: michael@0: public ErrorHandler getErrorHandler() { michael@0: return this.errorHandler; michael@0: } michael@0: michael@0: /** michael@0: * Sets the commentPolicy. michael@0: * michael@0: * @param commentPolicy michael@0: * the commentPolicy to set michael@0: */ michael@0: public void setCommentPolicy(XmlViolationPolicy commentPolicy) { michael@0: this.commentPolicy = commentPolicy; michael@0: } michael@0: michael@0: /** michael@0: * Sets the contentNonXmlCharPolicy. michael@0: * michael@0: * @param contentNonXmlCharPolicy michael@0: * the contentNonXmlCharPolicy to set michael@0: */ michael@0: public void setContentNonXmlCharPolicy( michael@0: XmlViolationPolicy contentNonXmlCharPolicy) { michael@0: if (contentNonXmlCharPolicy != XmlViolationPolicy.ALLOW) { michael@0: throw new IllegalArgumentException( michael@0: "Must use ErrorReportingTokenizer to set contentNonXmlCharPolicy to non-ALLOW."); michael@0: } michael@0: } michael@0: michael@0: /** michael@0: * Sets the contentSpacePolicy. michael@0: * michael@0: * @param contentSpacePolicy michael@0: * the contentSpacePolicy to set michael@0: */ michael@0: public void setContentSpacePolicy(XmlViolationPolicy contentSpacePolicy) { michael@0: this.contentSpacePolicy = contentSpacePolicy; michael@0: } michael@0: michael@0: /** michael@0: * Sets the xmlnsPolicy. michael@0: * michael@0: * @param xmlnsPolicy michael@0: * the xmlnsPolicy to set michael@0: */ michael@0: public void setXmlnsPolicy(XmlViolationPolicy xmlnsPolicy) { michael@0: if (xmlnsPolicy == XmlViolationPolicy.FATAL) { michael@0: throw new IllegalArgumentException("Can't use FATAL here."); michael@0: } michael@0: this.xmlnsPolicy = xmlnsPolicy; michael@0: } michael@0: michael@0: public void setNamePolicy(XmlViolationPolicy namePolicy) { michael@0: this.namePolicy = namePolicy; michael@0: } michael@0: michael@0: /** michael@0: * Sets the html4ModeCompatibleWithXhtml1Schemata. michael@0: * michael@0: * @param html4ModeCompatibleWithXhtml1Schemata michael@0: * the html4ModeCompatibleWithXhtml1Schemata to set michael@0: */ michael@0: public void setHtml4ModeCompatibleWithXhtml1Schemata( michael@0: boolean html4ModeCompatibleWithXhtml1Schemata) { michael@0: this.html4ModeCompatibleWithXhtml1Schemata = html4ModeCompatibleWithXhtml1Schemata; michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: // For the token handler to call michael@0: /** michael@0: * Sets the tokenizer state and the associated element name. This should michael@0: * only ever used to put the tokenizer into one of the states that have michael@0: * a special end tag expectation. michael@0: * michael@0: * @param specialTokenizerState michael@0: * the tokenizer state to set michael@0: * @param endTagExpectation michael@0: * the expected end tag for transitioning back to normal michael@0: */ michael@0: public void setStateAndEndTagExpectation(int specialTokenizerState, michael@0: @Local String endTagExpectation) { michael@0: this.stateSave = specialTokenizerState; michael@0: if (specialTokenizerState == Tokenizer.DATA) { michael@0: return; michael@0: } michael@0: @Auto char[] asArray = Portability.newCharArrayFromLocal(endTagExpectation); michael@0: this.endTagExpectation = ElementName.elementNameByBuffer(asArray, 0, michael@0: asArray.length, interner); michael@0: endTagExpectationToArray(); michael@0: } michael@0: michael@0: /** michael@0: * Sets the tokenizer state and the associated element name. This should michael@0: * only ever used to put the tokenizer into one of the states that have michael@0: * a special end tag expectation. michael@0: * michael@0: * @param specialTokenizerState michael@0: * the tokenizer state to set michael@0: * @param endTagExpectation michael@0: * the expected end tag for transitioning back to normal michael@0: */ michael@0: public void setStateAndEndTagExpectation(int specialTokenizerState, michael@0: ElementName endTagExpectation) { michael@0: this.stateSave = specialTokenizerState; michael@0: this.endTagExpectation = endTagExpectation; michael@0: endTagExpectationToArray(); michael@0: } michael@0: michael@0: private void endTagExpectationToArray() { michael@0: switch (endTagExpectation.getGroup()) { michael@0: case TreeBuilder.TITLE: michael@0: endTagExpectationAsArray = TITLE_ARR; michael@0: return; michael@0: case TreeBuilder.SCRIPT: michael@0: endTagExpectationAsArray = SCRIPT_ARR; michael@0: return; michael@0: case TreeBuilder.STYLE: michael@0: endTagExpectationAsArray = STYLE_ARR; michael@0: return; michael@0: case TreeBuilder.PLAINTEXT: michael@0: endTagExpectationAsArray = PLAINTEXT_ARR; michael@0: return; michael@0: case TreeBuilder.XMP: michael@0: endTagExpectationAsArray = XMP_ARR; michael@0: return; michael@0: case TreeBuilder.TEXTAREA: michael@0: endTagExpectationAsArray = TEXTAREA_ARR; michael@0: return; michael@0: case TreeBuilder.IFRAME: michael@0: endTagExpectationAsArray = IFRAME_ARR; michael@0: return; michael@0: case TreeBuilder.NOEMBED: michael@0: endTagExpectationAsArray = NOEMBED_ARR; michael@0: return; michael@0: case TreeBuilder.NOSCRIPT: michael@0: endTagExpectationAsArray = NOSCRIPT_ARR; michael@0: return; michael@0: case TreeBuilder.NOFRAMES: michael@0: endTagExpectationAsArray = NOFRAMES_ARR; michael@0: return; michael@0: default: michael@0: assert false: "Bad end tag expectation."; michael@0: return; michael@0: } michael@0: } michael@0: michael@0: /** michael@0: * For C++ use only. michael@0: */ michael@0: public void setLineNumber(int line) { michael@0: this.line = line; michael@0: } michael@0: michael@0: // start Locator impl michael@0: michael@0: /** michael@0: * @see org.xml.sax.Locator#getLineNumber() michael@0: */ michael@0: @Inline public int getLineNumber() { michael@0: return line; michael@0: } michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * @see org.xml.sax.Locator#getColumnNumber() michael@0: */ michael@0: @Inline public int getColumnNumber() { michael@0: return -1; michael@0: } michael@0: michael@0: /** michael@0: * @see org.xml.sax.Locator#getPublicId() michael@0: */ michael@0: public String getPublicId() { michael@0: return publicId; michael@0: } michael@0: michael@0: /** michael@0: * @see org.xml.sax.Locator#getSystemId() michael@0: */ michael@0: public String getSystemId() { michael@0: return systemId; michael@0: } michael@0: michael@0: // end Locator impl michael@0: michael@0: // end public API michael@0: michael@0: public void notifyAboutMetaBoundary() { michael@0: metaBoundaryPassed = true; michael@0: } michael@0: michael@0: void turnOnAdditionalHtml4Errors() { michael@0: html4 = true; michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: HtmlAttributes emptyAttributes() { michael@0: // [NOCPP[ michael@0: if (newAttributesEachTime) { michael@0: return new HtmlAttributes(mappingLangToXmlLang); michael@0: } else { michael@0: // ]NOCPP] michael@0: return HtmlAttributes.EMPTY_ATTRIBUTES; michael@0: // [NOCPP[ michael@0: } michael@0: // ]NOCPP] michael@0: } michael@0: michael@0: @Inline private void clearStrBufAndAppend(char c) { michael@0: strBuf[0] = c; michael@0: strBufLen = 1; michael@0: } michael@0: michael@0: @Inline private void clearStrBuf() { michael@0: strBufLen = 0; michael@0: } michael@0: michael@0: /** michael@0: * Appends to the smaller buffer. michael@0: * michael@0: * @param c michael@0: * the UTF-16 code unit to append michael@0: */ michael@0: private void appendStrBuf(char c) { michael@0: if (strBufLen == strBuf.length) { michael@0: char[] newBuf = new char[strBuf.length + Tokenizer.BUFFER_GROW_BY]; michael@0: System.arraycopy(strBuf, 0, newBuf, 0, strBuf.length); michael@0: strBuf = newBuf; michael@0: } michael@0: strBuf[strBufLen++] = c; michael@0: } michael@0: michael@0: /** michael@0: * The smaller buffer as a String. Currently only used for error reporting. michael@0: * michael@0: *

michael@0: * C++ memory note: The return value must be released. michael@0: * michael@0: * @return the smaller buffer as a string michael@0: */ michael@0: protected String strBufToString() { michael@0: return Portability.newStringFromBuffer(strBuf, 0, strBufLen); michael@0: } michael@0: michael@0: /** michael@0: * Returns the short buffer as a local name. The return value is released in michael@0: * emitDoctypeToken(). michael@0: * michael@0: * @return the smaller buffer as local name michael@0: */ michael@0: private void strBufToDoctypeName() { michael@0: doctypeName = Portability.newLocalNameFromBuffer(strBuf, 0, strBufLen, michael@0: interner); michael@0: } michael@0: michael@0: /** michael@0: * Emits the smaller buffer as character tokens. michael@0: * michael@0: * @throws SAXException michael@0: * if the token handler threw michael@0: */ michael@0: private void emitStrBuf() throws SAXException { michael@0: if (strBufLen > 0) { michael@0: tokenHandler.characters(strBuf, 0, strBufLen); michael@0: } michael@0: } michael@0: michael@0: @Inline private void clearLongStrBuf() { michael@0: longStrBufLen = 0; michael@0: } michael@0: michael@0: @Inline private void clearLongStrBufAndAppend(char c) { michael@0: longStrBuf[0] = c; michael@0: longStrBufLen = 1; michael@0: } michael@0: michael@0: /** michael@0: * Appends to the larger buffer. michael@0: * michael@0: * @param c michael@0: * the UTF-16 code unit to append michael@0: */ michael@0: private void appendLongStrBuf(char c) { michael@0: if (longStrBufLen == longStrBuf.length) { michael@0: char[] newBuf = new char[longStrBufLen + (longStrBufLen >> 1)]; michael@0: System.arraycopy(longStrBuf, 0, newBuf, 0, longStrBuf.length); michael@0: longStrBuf = newBuf; michael@0: } michael@0: longStrBuf[longStrBufLen++] = c; michael@0: } michael@0: michael@0: @Inline private void appendSecondHyphenToBogusComment() throws SAXException { michael@0: // [NOCPP[ michael@0: switch (commentPolicy) { michael@0: case ALTER_INFOSET: michael@0: // detachLongStrBuf(); michael@0: appendLongStrBuf(' '); michael@0: // FALLTHROUGH michael@0: case ALLOW: michael@0: warn("The document is not mappable to XML 1.0 due to two consecutive hyphens in a comment."); michael@0: // ]NOCPP] michael@0: appendLongStrBuf('-'); michael@0: // [NOCPP[ michael@0: break; michael@0: case FATAL: michael@0: fatal("The document is not mappable to XML 1.0 due to two consecutive hyphens in a comment."); michael@0: break; michael@0: } michael@0: // ]NOCPP] michael@0: } michael@0: michael@0: // [NOCPP[ michael@0: private void maybeAppendSpaceToBogusComment() throws SAXException { michael@0: switch (commentPolicy) { michael@0: case ALTER_INFOSET: michael@0: // detachLongStrBuf(); michael@0: appendLongStrBuf(' '); michael@0: // FALLTHROUGH michael@0: case ALLOW: michael@0: warn("The document is not mappable to XML 1.0 due to a trailing hyphen in a comment."); michael@0: break; michael@0: case FATAL: michael@0: fatal("The document is not mappable to XML 1.0 due to a trailing hyphen in a comment."); michael@0: break; michael@0: } michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: @Inline private void adjustDoubleHyphenAndAppendToLongStrBufAndErr(char c) michael@0: throws SAXException { michael@0: errConsecutiveHyphens(); michael@0: // [NOCPP[ michael@0: switch (commentPolicy) { michael@0: case ALTER_INFOSET: michael@0: // detachLongStrBuf(); michael@0: longStrBufLen--; michael@0: appendLongStrBuf(' '); michael@0: appendLongStrBuf('-'); michael@0: // FALLTHROUGH michael@0: case ALLOW: michael@0: warn("The document is not mappable to XML 1.0 due to two consecutive hyphens in a comment."); michael@0: // ]NOCPP] michael@0: appendLongStrBuf(c); michael@0: // [NOCPP[ michael@0: break; michael@0: case FATAL: michael@0: fatal("The document is not mappable to XML 1.0 due to two consecutive hyphens in a comment."); michael@0: break; michael@0: } michael@0: // ]NOCPP] michael@0: } michael@0: michael@0: private void appendLongStrBuf(@NoLength char[] buffer, int offset, int length) { michael@0: int reqLen = longStrBufLen + length; michael@0: if (longStrBuf.length < reqLen) { michael@0: char[] newBuf = new char[reqLen + (reqLen >> 1)]; michael@0: System.arraycopy(longStrBuf, 0, newBuf, 0, longStrBuf.length); michael@0: longStrBuf = newBuf; michael@0: } michael@0: System.arraycopy(buffer, offset, longStrBuf, longStrBufLen, length); michael@0: longStrBufLen = reqLen; michael@0: } michael@0: michael@0: /** michael@0: * Append the contents of the smaller buffer to the larger one. michael@0: */ michael@0: @Inline private void appendStrBufToLongStrBuf() { michael@0: appendLongStrBuf(strBuf, 0, strBufLen); michael@0: } michael@0: michael@0: /** michael@0: * The larger buffer as a string. michael@0: * michael@0: *

michael@0: * C++ memory note: The return value must be released. michael@0: * michael@0: * @return the larger buffer as a string michael@0: */ michael@0: private String longStrBufToString() { michael@0: return Portability.newStringFromBuffer(longStrBuf, 0, longStrBufLen); michael@0: } michael@0: michael@0: /** michael@0: * Emits the current comment token. michael@0: * michael@0: * @param pos michael@0: * TODO michael@0: * michael@0: * @throws SAXException michael@0: */ michael@0: private void emitComment(int provisionalHyphens, int pos) michael@0: throws SAXException { michael@0: // [NOCPP[ michael@0: if (wantsComments) { michael@0: // ]NOCPP] michael@0: // if (longStrBufOffset != -1) { michael@0: // tokenHandler.comment(buf, longStrBufOffset, longStrBufLen michael@0: // - provisionalHyphens); michael@0: // } else { michael@0: tokenHandler.comment(longStrBuf, 0, longStrBufLen michael@0: - provisionalHyphens); michael@0: // } michael@0: // [NOCPP[ michael@0: } michael@0: // ]NOCPP] michael@0: cstart = pos + 1; michael@0: } michael@0: michael@0: /** michael@0: * Flushes coalesced character tokens. michael@0: * michael@0: * @param buf michael@0: * TODO michael@0: * @param pos michael@0: * TODO michael@0: * michael@0: * @throws SAXException michael@0: */ michael@0: protected void flushChars(@NoLength char[] buf, int pos) michael@0: throws SAXException { michael@0: if (pos > cstart) { michael@0: tokenHandler.characters(buf, cstart, pos - cstart); michael@0: } michael@0: cstart = Integer.MAX_VALUE; michael@0: } michael@0: michael@0: /** michael@0: * Reports an condition that would make the infoset incompatible with XML michael@0: * 1.0 as fatal. michael@0: * michael@0: * @param message michael@0: * the message michael@0: * @throws SAXException michael@0: * @throws SAXParseException michael@0: */ michael@0: public void fatal(String message) throws SAXException { michael@0: SAXParseException spe = new SAXParseException(message, this); michael@0: if (errorHandler != null) { michael@0: errorHandler.fatalError(spe); michael@0: } michael@0: throw spe; michael@0: } michael@0: michael@0: /** michael@0: * Reports a Parse Error. michael@0: * michael@0: * @param message michael@0: * the message michael@0: * @throws SAXException michael@0: */ michael@0: public void err(String message) throws SAXException { michael@0: if (errorHandler == null) { michael@0: return; michael@0: } michael@0: SAXParseException spe = new SAXParseException(message, this); michael@0: errorHandler.error(spe); michael@0: } michael@0: michael@0: public void errTreeBuilder(String message) throws SAXException { michael@0: ErrorHandler eh = null; michael@0: if (tokenHandler instanceof TreeBuilder) { michael@0: TreeBuilder treeBuilder = (TreeBuilder) tokenHandler; michael@0: eh = treeBuilder.getErrorHandler(); michael@0: } michael@0: if (eh == null) { michael@0: eh = errorHandler; michael@0: } michael@0: if (eh == null) { michael@0: return; michael@0: } michael@0: SAXParseException spe = new SAXParseException(message, this); michael@0: eh.error(spe); michael@0: } michael@0: michael@0: /** michael@0: * Reports a warning michael@0: * michael@0: * @param message michael@0: * the message michael@0: * @throws SAXException michael@0: */ michael@0: public void warn(String message) throws SAXException { michael@0: if (errorHandler == null) { michael@0: return; michael@0: } michael@0: SAXParseException spe = new SAXParseException(message, this); michael@0: errorHandler.warning(spe); michael@0: } michael@0: michael@0: private void strBufToElementNameString() { michael@0: // if (strBufOffset != -1) { michael@0: // return ElementName.elementNameByBuffer(buf, strBufOffset, strBufLen); michael@0: // } else { michael@0: tagName = ElementName.elementNameByBuffer(strBuf, 0, strBufLen, michael@0: interner); michael@0: // } michael@0: } michael@0: michael@0: private int emitCurrentTagToken(boolean selfClosing, int pos) michael@0: throws SAXException { michael@0: cstart = pos + 1; michael@0: maybeErrSlashInEndTag(selfClosing); michael@0: stateSave = Tokenizer.DATA; michael@0: HtmlAttributes attrs = (attributes == null ? HtmlAttributes.EMPTY_ATTRIBUTES michael@0: : attributes); michael@0: if (endTag) { michael@0: /* michael@0: * When an end tag token is emitted, the content model flag must be michael@0: * switched to the PCDATA state. michael@0: */ michael@0: maybeErrAttributesOnEndTag(attrs); michael@0: // CPPONLY: if (!viewingXmlSource) { michael@0: tokenHandler.endTag(tagName); michael@0: // CPPONLY: } michael@0: // CPPONLY: if (newAttributesEachTime) { michael@0: // CPPONLY: Portability.delete(attributes); michael@0: // CPPONLY: attributes = null; michael@0: // CPPONLY: } michael@0: } else { michael@0: // CPPONLY: if (viewingXmlSource) { michael@0: // CPPONLY: assert newAttributesEachTime; michael@0: // CPPONLY: Portability.delete(attributes); michael@0: // CPPONLY: attributes = null; michael@0: // CPPONLY: } else { michael@0: tokenHandler.startTag(tagName, attrs, selfClosing); michael@0: // CPPONLY: } michael@0: } michael@0: tagName.release(); michael@0: tagName = null; michael@0: if (newAttributesEachTime) { michael@0: attributes = null; michael@0: } else { michael@0: attributes.clear(mappingLangToXmlLang); michael@0: } michael@0: /* michael@0: * The token handler may have called setStateAndEndTagExpectation michael@0: * and changed stateSave since the start of this method. michael@0: */ michael@0: return stateSave; michael@0: } michael@0: michael@0: private void attributeNameComplete() throws SAXException { michael@0: // if (strBufOffset != -1) { michael@0: // attributeName = AttributeName.nameByBuffer(buf, strBufOffset, michael@0: // strBufLen, namePolicy != XmlViolationPolicy.ALLOW); michael@0: // } else { michael@0: attributeName = AttributeName.nameByBuffer(strBuf, 0, strBufLen michael@0: // [NOCPP[ michael@0: , namePolicy != XmlViolationPolicy.ALLOW michael@0: // ]NOCPP] michael@0: , interner); michael@0: // } michael@0: michael@0: if (attributes == null) { michael@0: attributes = new HtmlAttributes(mappingLangToXmlLang); michael@0: } michael@0: michael@0: /* michael@0: * When the user agent leaves the attribute name state (and before michael@0: * emitting the tag token, if appropriate), the complete attribute's michael@0: * name must be compared to the other attributes on the same token; if michael@0: * there is already an attribute on the token with the exact same name, michael@0: * then this is a parse error and the new attribute must be dropped, michael@0: * along with the value that gets associated with it (if any). michael@0: */ michael@0: if (attributes.contains(attributeName)) { michael@0: errDuplicateAttribute(); michael@0: attributeName.release(); michael@0: attributeName = null; michael@0: } michael@0: } michael@0: michael@0: private void addAttributeWithoutValue() throws SAXException { michael@0: noteAttributeWithoutValue(); michael@0: michael@0: // [NOCPP[ michael@0: if (metaBoundaryPassed && AttributeName.CHARSET == attributeName michael@0: && ElementName.META == tagName) { michael@0: err("A \u201Ccharset\u201D attribute on a \u201Cmeta\u201D element found after the first 512 bytes."); michael@0: } michael@0: // ]NOCPP] michael@0: if (attributeName != null) { michael@0: // [NOCPP[ michael@0: if (html4) { michael@0: if (attributeName.isBoolean()) { michael@0: if (html4ModeCompatibleWithXhtml1Schemata) { michael@0: attributes.addAttribute(attributeName, michael@0: attributeName.getLocal(AttributeName.HTML), michael@0: xmlnsPolicy); michael@0: } else { michael@0: attributes.addAttribute(attributeName, "", xmlnsPolicy); michael@0: } michael@0: } else { michael@0: if (AttributeName.BORDER != attributeName) { michael@0: err("Attribute value omitted for a non-boolean attribute. (HTML4-only error.)"); michael@0: attributes.addAttribute(attributeName, "", xmlnsPolicy); michael@0: } michael@0: } michael@0: } else { michael@0: if (AttributeName.SRC == attributeName michael@0: || AttributeName.HREF == attributeName) { michael@0: warn("Attribute \u201C" michael@0: + attributeName.getLocal(AttributeName.HTML) michael@0: + "\u201D without an explicit value seen. The attribute may be dropped by IE7."); michael@0: } michael@0: // ]NOCPP] michael@0: attributes.addAttribute(attributeName, michael@0: Portability.newEmptyString() michael@0: // [NOCPP[ michael@0: , xmlnsPolicy michael@0: // ]NOCPP] michael@0: ); michael@0: // [NOCPP[ michael@0: } michael@0: // ]NOCPP] michael@0: attributeName = null; // attributeName has been adopted by the michael@0: // |attributes| object michael@0: } michael@0: } michael@0: michael@0: private void addAttributeWithValue() throws SAXException { michael@0: // [NOCPP[ michael@0: if (metaBoundaryPassed && ElementName.META == tagName michael@0: && AttributeName.CHARSET == attributeName) { michael@0: err("A \u201Ccharset\u201D attribute on a \u201Cmeta\u201D element found after the first 512 bytes."); michael@0: } michael@0: // ]NOCPP] michael@0: if (attributeName != null) { michael@0: String val = longStrBufToString(); // Ownership transferred to michael@0: // HtmlAttributes michael@0: // CPPONLY: if (mViewSource) { michael@0: // CPPONLY: mViewSource.MaybeLinkifyAttributeValue(attributeName, val); michael@0: // CPPONLY: } michael@0: // [NOCPP[ michael@0: if (!endTag && html4 && html4ModeCompatibleWithXhtml1Schemata michael@0: && attributeName.isCaseFolded()) { michael@0: val = newAsciiLowerCaseStringFromString(val); michael@0: } michael@0: // ]NOCPP] michael@0: attributes.addAttribute(attributeName, val michael@0: // [NOCPP[ michael@0: , xmlnsPolicy michael@0: // ]NOCPP] michael@0: ); michael@0: attributeName = null; // attributeName has been adopted by the michael@0: // |attributes| object michael@0: } michael@0: } michael@0: michael@0: // [NOCPP[ michael@0: michael@0: private static String newAsciiLowerCaseStringFromString(String str) { michael@0: if (str == null) { michael@0: return null; michael@0: } michael@0: char[] buf = new char[str.length()]; michael@0: for (int i = 0; i < str.length(); i++) { michael@0: char c = str.charAt(i); michael@0: if (c >= 'A' && c <= 'Z') { michael@0: c += 0x20; michael@0: } michael@0: buf[i] = c; michael@0: } michael@0: return new String(buf); michael@0: } michael@0: michael@0: protected void startErrorReporting() throws SAXException { michael@0: michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: public void start() throws SAXException { michael@0: initializeWithoutStarting(); michael@0: tokenHandler.startTokenization(this); michael@0: // [NOCPP[ michael@0: startErrorReporting(); michael@0: // ]NOCPP] michael@0: } michael@0: michael@0: public boolean tokenizeBuffer(UTF16Buffer buffer) throws SAXException { michael@0: int state = stateSave; michael@0: int returnState = returnStateSave; michael@0: char c = '\u0000'; michael@0: shouldSuspend = false; michael@0: lastCR = false; michael@0: michael@0: int start = buffer.getStart(); michael@0: /** michael@0: * The index of the last char read from buf. michael@0: */ michael@0: int pos = start - 1; michael@0: michael@0: /** michael@0: * The index of the first char in buf that is michael@0: * part of a coalesced run of character tokens or michael@0: * Integer.MAX_VALUE if there is not a current run being michael@0: * coalesced. michael@0: */ michael@0: switch (state) { michael@0: case DATA: michael@0: case RCDATA: michael@0: case SCRIPT_DATA: michael@0: case PLAINTEXT: michael@0: case RAWTEXT: michael@0: case CDATA_SECTION: michael@0: case SCRIPT_DATA_ESCAPED: michael@0: case SCRIPT_DATA_ESCAPE_START: michael@0: case SCRIPT_DATA_ESCAPE_START_DASH: michael@0: case SCRIPT_DATA_ESCAPED_DASH: michael@0: case SCRIPT_DATA_ESCAPED_DASH_DASH: michael@0: case SCRIPT_DATA_DOUBLE_ESCAPE_START: michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED: michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED_LESS_THAN_SIGN: michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED_DASH: michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED_DASH_DASH: michael@0: case SCRIPT_DATA_DOUBLE_ESCAPE_END: michael@0: cstart = start; michael@0: break; michael@0: default: michael@0: cstart = Integer.MAX_VALUE; michael@0: break; michael@0: } michael@0: michael@0: /** michael@0: * The number of chars in buf that have michael@0: * meaning. (The rest of the array is garbage and should not be michael@0: * examined.) michael@0: */ michael@0: // CPPONLY: if (mViewSource) { michael@0: // CPPONLY: mViewSource.SetBuffer(buffer); michael@0: // CPPONLY: pos = stateLoop(state, c, pos, buffer.getBuffer(), false, returnState, buffer.getEnd()); michael@0: // CPPONLY: mViewSource.DropBuffer((pos == buffer.getEnd()) ? pos : pos + 1); michael@0: // CPPONLY: } else { michael@0: // CPPONLY: pos = stateLoop(state, c, pos, buffer.getBuffer(), false, returnState, buffer.getEnd()); michael@0: // CPPONLY: } michael@0: // [NOCPP[ michael@0: pos = stateLoop(state, c, pos, buffer.getBuffer(), false, returnState, michael@0: buffer.getEnd()); michael@0: // ]NOCPP] michael@0: if (pos == buffer.getEnd()) { michael@0: // exiting due to end of buffer michael@0: buffer.setStart(pos); michael@0: } else { michael@0: buffer.setStart(pos + 1); michael@0: } michael@0: return lastCR; michael@0: } michael@0: michael@0: @SuppressWarnings("unused") private int stateLoop(int state, char c, michael@0: int pos, @NoLength char[] buf, boolean reconsume, int returnState, michael@0: int endPos) throws SAXException { michael@0: /* michael@0: * Idioms used in this code: michael@0: * michael@0: * michael@0: * Consuming the next input character michael@0: * michael@0: * To consume the next input character, the code does this: if (++pos == michael@0: * endPos) { break stateloop; } c = checkChar(buf, pos); michael@0: * michael@0: * michael@0: * Staying in a state michael@0: * michael@0: * When there's a state that the tokenizer may stay in over multiple michael@0: * input characters, the state has a wrapper |for(;;)| loop and staying michael@0: * in the state continues the loop. michael@0: * michael@0: * michael@0: * Switching to another state michael@0: * michael@0: * To switch to another state, the code sets the state variable to the michael@0: * magic number of the new state. Then it either continues stateloop or michael@0: * breaks out of the state's own wrapper loop if the target state is michael@0: * right after the current state in source order. (This is a partial michael@0: * workaround for Java's lack of goto.) michael@0: * michael@0: * michael@0: * Reconsume support michael@0: * michael@0: * The spec sometimes says that an input character is reconsumed in michael@0: * another state. If a state can ever be entered so that an input michael@0: * character can be reconsumed in it, the state's code starts with an michael@0: * |if (reconsume)| that sets reconsume to false and skips over the michael@0: * normal code for consuming a new character. michael@0: * michael@0: * To reconsume the current character in another state, the code sets michael@0: * |reconsume| to true and then switches to the other state. michael@0: * michael@0: * michael@0: * Emitting character tokens michael@0: * michael@0: * This method emits character tokens lazily. Whenever a new range of michael@0: * character tokens starts, the field cstart must be set to the start michael@0: * index of the range. The flushChars() method must be called at the end michael@0: * of a range to flush it. michael@0: * michael@0: * michael@0: * U+0000 handling michael@0: * michael@0: * The various states have to handle the replacement of U+0000 with michael@0: * U+FFFD. However, if U+0000 would be reconsumed in another state, the michael@0: * replacement doesn't need to happen, because it's handled by the michael@0: * reconsuming state. michael@0: * michael@0: * michael@0: * LF handling michael@0: * michael@0: * Every state needs to increment the line number upon LF unless the LF michael@0: * gets reconsumed by another state which increments the line number. michael@0: * michael@0: * michael@0: * CR handling michael@0: * michael@0: * Every state needs to handle CR unless the CR gets reconsumed and is michael@0: * handled by the reconsuming state. The CR needs to be handled as if it michael@0: * were and LF, the lastCR field must be set to true and then this michael@0: * method must return. The IO driver will then swallow the next michael@0: * character if it is an LF to coalesce CRLF. michael@0: */ michael@0: stateloop: for (;;) { michael@0: switch (state) { michael@0: case DATA: michael@0: dataloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: switch (c) { michael@0: case '&': michael@0: /* michael@0: * U+0026 AMPERSAND (&) Switch to the character michael@0: * reference in data state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: clearStrBufAndAppend(c); michael@0: setAdditionalAndRememberAmpersandLocation('\u0000'); michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.CONSUME_CHARACTER_REFERENCE, reconsume, pos); michael@0: continue stateloop; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the tag michael@0: * open state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: michael@0: state = transition(state, Tokenizer.TAG_OPEN, reconsume, pos); michael@0: break dataloop; // FALL THROUGH continue michael@0: // stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the input character as a michael@0: * character token. michael@0: * michael@0: * Stay in the data state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case TAG_OPEN: michael@0: tagopenloop: for (;;) { michael@0: /* michael@0: * The behavior of this state depends on the content michael@0: * model flag. michael@0: */ michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * If the content model flag is set to the PCDATA state michael@0: * Consume the next input character: michael@0: */ michael@0: if (c >= 'A' && c <= 'Z') { michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to U+005A michael@0: * LATIN CAPITAL LETTER Z Create a new start tag michael@0: * token, michael@0: */ michael@0: endTag = false; michael@0: /* michael@0: * set its tag name to the lowercase version of the michael@0: * input character (add 0x0020 to the character's michael@0: * code point), michael@0: */ michael@0: clearStrBufAndAppend((char) (c + 0x20)); michael@0: /* then switch to the tag name state. */ michael@0: state = transition(state, Tokenizer.TAG_NAME, reconsume, pos); michael@0: /* michael@0: * (Don't emit the token yet; further details will michael@0: * be filled in before it is emitted.) michael@0: */ michael@0: break tagopenloop; michael@0: // continue stateloop; michael@0: } else if (c >= 'a' && c <= 'z') { michael@0: /* michael@0: * U+0061 LATIN SMALL LETTER A through to U+007A michael@0: * LATIN SMALL LETTER Z Create a new start tag michael@0: * token, michael@0: */ michael@0: endTag = false; michael@0: /* michael@0: * set its tag name to the input character, michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: /* then switch to the tag name state. */ michael@0: state = transition(state, Tokenizer.TAG_NAME, reconsume, pos); michael@0: /* michael@0: * (Don't emit the token yet; further details will michael@0: * be filled in before it is emitted.) michael@0: */ michael@0: break tagopenloop; michael@0: // continue stateloop; michael@0: } michael@0: switch (c) { michael@0: case '!': michael@0: /* michael@0: * U+0021 EXCLAMATION MARK (!) Switch to the michael@0: * markup declaration open state. michael@0: */ michael@0: state = transition(state, Tokenizer.MARKUP_DECLARATION_OPEN, reconsume, pos); michael@0: continue stateloop; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Switch to the close tag michael@0: * open state. michael@0: */ michael@0: state = transition(state, Tokenizer.CLOSE_TAG_OPEN, reconsume, pos); michael@0: continue stateloop; michael@0: case '?': michael@0: // CPPONLY: if (viewingXmlSource) { michael@0: // CPPONLY: state = transition(state, michael@0: // CPPONLY: Tokenizer.PROCESSING_INSTRUCTION, michael@0: // CPPONLY: reconsume, michael@0: // CPPONLY: pos); michael@0: // CPPONLY: continue stateloop; michael@0: // CPPONLY: } michael@0: /* michael@0: * U+003F QUESTION MARK (?) Parse error. michael@0: */ michael@0: errProcessingInstruction(); michael@0: /* michael@0: * Switch to the bogus comment state. michael@0: */ michael@0: clearLongStrBufAndAppend(c); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Parse error. michael@0: */ michael@0: errLtGt(); michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character token michael@0: * and a U+003E GREATER-THAN SIGN character michael@0: * token. michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 2); michael@0: /* Switch to the data state. */ michael@0: cstart = pos + 1; michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Parse error. michael@0: */ michael@0: errBadCharAfterLt(c); michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character token michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: /* michael@0: * and reconsume the current input character in michael@0: * the data state. michael@0: */ michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALL THROUGH DON'T REORDER michael@0: case TAG_NAME: michael@0: tagnameloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: strBufToElementNameString(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the before attribute name state. michael@0: */ michael@0: strBufToElementNameString(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: break tagnameloop; michael@0: // continue stateloop; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Switch to the self-closing michael@0: * start tag state. michael@0: */ michael@0: strBufToElementNameString(); michael@0: state = transition(state, Tokenizer.SELF_CLOSING_START_TAG, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * tag token. michael@0: */ michael@0: strBufToElementNameString(); michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: if (c >= 'A' && c <= 'Z') { michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Append the michael@0: * lowercase version of the current input michael@0: * character (add 0x0020 to the character's michael@0: * code point) to the current tag token's michael@0: * tag name. michael@0: */ michael@0: c += 0x20; michael@0: } michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current tag token's tag michael@0: * name. michael@0: */ michael@0: appendStrBuf(c); michael@0: /* michael@0: * Stay in the tag name state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BEFORE_ATTRIBUTE_NAME: michael@0: beforeattributenameloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the before attribute name state. michael@0: */ michael@0: continue; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Switch to the self-closing michael@0: * start tag state. michael@0: */ michael@0: state = transition(state, Tokenizer.SELF_CLOSING_START_TAG, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * tag token. michael@0: */ michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: case '\"': michael@0: case '\'': michael@0: case '<': michael@0: case '=': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") U+0027 APOSTROPHE michael@0: * (') U+003C LESS-THAN SIGN (<) U+003D EQUALS michael@0: * SIGN (=) Parse error. michael@0: */ michael@0: errBadCharBeforeAttributeNameOrNull(c); michael@0: /* michael@0: * Treat it as per the "anything else" entry michael@0: * below. michael@0: */ michael@0: default: michael@0: /* michael@0: * Anything else Start a new attribute in the michael@0: * current tag token. michael@0: */ michael@0: if (c >= 'A' && c <= 'Z') { michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Set that michael@0: * attribute's name to the lowercase version michael@0: * of the current input character (add michael@0: * 0x0020 to the character's code point) michael@0: */ michael@0: c += 0x20; michael@0: } michael@0: /* michael@0: * Set that attribute's name to the current michael@0: * input character, michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: /* michael@0: * and its value to the empty string. michael@0: */ michael@0: // Will do later. michael@0: /* michael@0: * Switch to the attribute name state. michael@0: */ michael@0: state = transition(state, Tokenizer.ATTRIBUTE_NAME, reconsume, pos); michael@0: break beforeattributenameloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case ATTRIBUTE_NAME: michael@0: attributenameloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: attributeNameComplete(); michael@0: state = transition(state, Tokenizer.AFTER_ATTRIBUTE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the after attribute name state. michael@0: */ michael@0: attributeNameComplete(); michael@0: state = transition(state, Tokenizer.AFTER_ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Switch to the self-closing michael@0: * start tag state. michael@0: */ michael@0: attributeNameComplete(); michael@0: addAttributeWithoutValue(); michael@0: state = transition(state, Tokenizer.SELF_CLOSING_START_TAG, reconsume, pos); michael@0: continue stateloop; michael@0: case '=': michael@0: /* michael@0: * U+003D EQUALS SIGN (=) Switch to the before michael@0: * attribute value state. michael@0: */ michael@0: attributeNameComplete(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_VALUE, reconsume, pos); michael@0: break attributenameloop; michael@0: // continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * tag token. michael@0: */ michael@0: attributeNameComplete(); michael@0: addAttributeWithoutValue(); michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: case '\"': michael@0: case '\'': michael@0: case '<': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") U+0027 APOSTROPHE michael@0: * (') U+003C LESS-THAN SIGN (<) Parse error. michael@0: */ michael@0: errQuoteOrLtInAttributeNameOrNull(c); michael@0: /* michael@0: * Treat it as per the "anything else" entry michael@0: * below. michael@0: */ michael@0: default: michael@0: if (c >= 'A' && c <= 'Z') { michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Append the michael@0: * lowercase version of the current input michael@0: * character (add 0x0020 to the character's michael@0: * code point) to the current attribute's michael@0: * name. michael@0: */ michael@0: c += 0x20; michael@0: } michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current attribute's name. michael@0: */ michael@0: appendStrBuf(c); michael@0: /* michael@0: * Stay in the attribute name state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BEFORE_ATTRIBUTE_VALUE: michael@0: beforeattributevalueloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the before attribute value state. michael@0: */ michael@0: continue; michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Switch to the michael@0: * attribute value (double-quoted) state. michael@0: */ michael@0: clearLongStrBuf(); michael@0: state = transition(state, Tokenizer.ATTRIBUTE_VALUE_DOUBLE_QUOTED, reconsume, pos); michael@0: break beforeattributevalueloop; michael@0: // continue stateloop; michael@0: case '&': michael@0: /* michael@0: * U+0026 AMPERSAND (&) Switch to the attribute michael@0: * value (unquoted) state and reconsume this michael@0: * input character. michael@0: */ michael@0: clearLongStrBuf(); michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.ATTRIBUTE_VALUE_UNQUOTED, reconsume, pos); michael@0: noteUnquotedAttributeValue(); michael@0: continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Switch to the attribute michael@0: * value (single-quoted) state. michael@0: */ michael@0: clearLongStrBuf(); michael@0: state = transition(state, Tokenizer.ATTRIBUTE_VALUE_SINGLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Parse error. michael@0: */ michael@0: errAttributeValueMissing(); michael@0: /* michael@0: * Emit the current tag token. michael@0: */ michael@0: addAttributeWithoutValue(); michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: case '<': michael@0: case '=': michael@0: case '`': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) U+003D EQUALS SIGN michael@0: * (=) U+0060 GRAVE ACCENT (`) michael@0: */ michael@0: errLtOrEqualsOrGraveInUnquotedAttributeOrNull(c); michael@0: /* michael@0: * Treat it as per the "anything else" entry michael@0: * below. michael@0: */ michael@0: default: michael@0: // [NOCPP[ michael@0: errHtml4NonNameInUnquotedAttribute(c); michael@0: // ]NOCPP] michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current attribute's value. michael@0: */ michael@0: clearLongStrBufAndAppend(c); michael@0: /* michael@0: * Switch to the attribute value (unquoted) michael@0: * state. michael@0: */ michael@0: michael@0: state = transition(state, Tokenizer.ATTRIBUTE_VALUE_UNQUOTED, reconsume, pos); michael@0: noteUnquotedAttributeValue(); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case ATTRIBUTE_VALUE_DOUBLE_QUOTED: michael@0: attributevaluedoublequotedloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Switch to the after michael@0: * attribute value (quoted) state. michael@0: */ michael@0: addAttributeWithValue(); michael@0: michael@0: state = transition(state, Tokenizer.AFTER_ATTRIBUTE_VALUE_QUOTED, reconsume, pos); michael@0: break attributevaluedoublequotedloop; michael@0: // continue stateloop; michael@0: case '&': michael@0: /* michael@0: * U+0026 AMPERSAND (&) Switch to the character michael@0: * reference in attribute value state, with the michael@0: * additional allowed character being U+0022 michael@0: * QUOTATION MARK ("). michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: setAdditionalAndRememberAmpersandLocation('\"'); michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.CONSUME_CHARACTER_REFERENCE, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current attribute's value. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the attribute value (double-quoted) michael@0: * state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case AFTER_ATTRIBUTE_VALUE_QUOTED: michael@0: afterattributevaluequotedloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the before attribute name state. michael@0: */ michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Switch to the self-closing michael@0: * start tag state. michael@0: */ michael@0: state = transition(state, Tokenizer.SELF_CLOSING_START_TAG, reconsume, pos); michael@0: break afterattributevaluequotedloop; michael@0: // continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * tag token. michael@0: */ michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Parse error. michael@0: */ michael@0: errNoSpaceBetweenAttributes(); michael@0: /* michael@0: * Reconsume the character in the before michael@0: * attribute name state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case SELF_CLOSING_START_TAG: michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Set the self-closing michael@0: * flag of the current tag token. Emit the current michael@0: * tag token. michael@0: */ michael@0: // [NOCPP[ michael@0: errHtml4XmlVoidSyntax(); michael@0: // ]NOCPP] michael@0: state = transition(state, emitCurrentTagToken(true, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: default: michael@0: /* Anything else Parse error. */ michael@0: errSlashNotFollowedByGt(); michael@0: /* michael@0: * Reconsume the character in the before attribute michael@0: * name state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: // XXX reorder point michael@0: case ATTRIBUTE_VALUE_UNQUOTED: michael@0: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: addAttributeWithValue(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the before attribute name state. michael@0: */ michael@0: addAttributeWithValue(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: case '&': michael@0: /* michael@0: * U+0026 AMPERSAND (&) Switch to the character michael@0: * reference in attribute value state, with the michael@0: * additional allowed character being U+003E michael@0: * GREATER-THAN SIGN (>) michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: setAdditionalAndRememberAmpersandLocation('>'); michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.CONSUME_CHARACTER_REFERENCE, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * tag token. michael@0: */ michael@0: addAttributeWithValue(); michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: case '<': michael@0: case '\"': michael@0: case '\'': michael@0: case '=': michael@0: case '`': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") U+0027 APOSTROPHE michael@0: * (') U+003C LESS-THAN SIGN (<) U+003D EQUALS michael@0: * SIGN (=) U+0060 GRAVE ACCENT (`) Parse error. michael@0: */ michael@0: errUnquotedAttributeValOrNull(c); michael@0: /* michael@0: * Treat it as per the "anything else" entry michael@0: * below. michael@0: */ michael@0: // fall through michael@0: default: michael@0: // [NOCPP] michael@0: errHtml4NonNameInUnquotedAttribute(c); michael@0: // ]NOCPP] michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current attribute's value. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the attribute value (unquoted) state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case AFTER_ATTRIBUTE_NAME: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the after attribute name state. michael@0: */ michael@0: continue; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Switch to the self-closing michael@0: * start tag state. michael@0: */ michael@0: addAttributeWithoutValue(); michael@0: state = transition(state, Tokenizer.SELF_CLOSING_START_TAG, reconsume, pos); michael@0: continue stateloop; michael@0: case '=': michael@0: /* michael@0: * U+003D EQUALS SIGN (=) Switch to the before michael@0: * attribute value state. michael@0: */ michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_VALUE, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * tag token. michael@0: */ michael@0: addAttributeWithoutValue(); michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: case '\"': michael@0: case '\'': michael@0: case '<': michael@0: errQuoteOrLtInAttributeNameOrNull(c); michael@0: /* michael@0: * Treat it as per the "anything else" entry michael@0: * below. michael@0: */ michael@0: default: michael@0: addAttributeWithoutValue(); michael@0: /* michael@0: * Anything else Start a new attribute in the michael@0: * current tag token. michael@0: */ michael@0: if (c >= 'A' && c <= 'Z') { michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Set that michael@0: * attribute's name to the lowercase version michael@0: * of the current input character (add michael@0: * 0x0020 to the character's code point) michael@0: */ michael@0: c += 0x20; michael@0: } michael@0: /* michael@0: * Set that attribute's name to the current michael@0: * input character, michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: /* michael@0: * and its value to the empty string. michael@0: */ michael@0: // Will do later. michael@0: /* michael@0: * Switch to the attribute name state. michael@0: */ michael@0: state = transition(state, Tokenizer.ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case MARKUP_DECLARATION_OPEN: michael@0: markupdeclarationopenloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * If the next two characters are both U+002D michael@0: * HYPHEN-MINUS characters (-), consume those two michael@0: * characters, create a comment token whose data is the michael@0: * empty string, and switch to the comment start state. michael@0: * michael@0: * Otherwise, if the next seven characters are an ASCII michael@0: * case-insensitive match for the word "DOCTYPE", then michael@0: * consume those characters and switch to the DOCTYPE michael@0: * state. michael@0: * michael@0: * Otherwise, if the insertion mode is michael@0: * "in foreign content" and the current node is not an michael@0: * element in the HTML namespace and the next seven michael@0: * characters are an case-sensitive match for the string michael@0: * "[CDATA[" (the five uppercase letters "CDATA" with a michael@0: * U+005B LEFT SQUARE BRACKET character before and michael@0: * after), then consume those characters and switch to michael@0: * the CDATA section state. michael@0: * michael@0: * Otherwise, is is a parse error. Switch to the bogus michael@0: * comment state. The next character that is consumed, michael@0: * if any, is the first character that will be in the michael@0: * comment. michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: clearLongStrBufAndAppend(c); michael@0: state = transition(state, Tokenizer.MARKUP_DECLARATION_HYPHEN, reconsume, pos); michael@0: break markupdeclarationopenloop; michael@0: // continue stateloop; michael@0: case 'd': michael@0: case 'D': michael@0: clearLongStrBufAndAppend(c); michael@0: index = 0; michael@0: state = transition(state, Tokenizer.MARKUP_DECLARATION_OCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: case '[': michael@0: if (tokenHandler.cdataSectionAllowed()) { michael@0: clearLongStrBufAndAppend(c); michael@0: index = 0; michael@0: state = transition(state, Tokenizer.CDATA_START, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: // else fall through michael@0: default: michael@0: errBogusComment(); michael@0: clearLongStrBuf(); michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case MARKUP_DECLARATION_HYPHEN: michael@0: markupdeclarationhyphenloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case '\u0000': michael@0: break stateloop; michael@0: case '-': michael@0: clearLongStrBuf(); michael@0: state = transition(state, Tokenizer.COMMENT_START, reconsume, pos); michael@0: break markupdeclarationhyphenloop; michael@0: // continue stateloop; michael@0: default: michael@0: errBogusComment(); michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case COMMENT_START: michael@0: commentstartloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Comment start state michael@0: * michael@0: * michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Switch to the comment michael@0: * start dash state. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.COMMENT_START_DASH, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Parse error. michael@0: */ michael@0: errPrematureEndOfComment(); michael@0: /* Emit the comment token. */ michael@0: emitComment(0, pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: break commentstartloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the input character to michael@0: * the comment token's data. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Switch to the comment state. michael@0: */ michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: break commentstartloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case COMMENT: michael@0: commentloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Comment state Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Switch to the comment michael@0: * end dash state michael@0: */ michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.COMMENT_END_DASH, reconsume, pos); michael@0: break commentloop; michael@0: // continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the input character to michael@0: * the comment token's data. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the comment state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case COMMENT_END_DASH: michael@0: commentenddashloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Comment end dash state Consume the next input michael@0: * character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Switch to the comment michael@0: * end state michael@0: */ michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.COMMENT_END, reconsume, pos); michael@0: break commentenddashloop; michael@0: // continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append a U+002D HYPHEN-MINUS michael@0: * (-) character and the input character to the michael@0: * comment token's data. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Switch to the comment state. michael@0: */ michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case COMMENT_END: michael@0: commentendloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Comment end dash state Consume the next input michael@0: * character: michael@0: */ michael@0: switch (c) { michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the comment michael@0: * token. michael@0: */ michael@0: emitComment(2, pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '-': michael@0: /* U+002D HYPHEN-MINUS (-) Parse error. */ michael@0: /* michael@0: * Append a U+002D HYPHEN-MINUS (-) character to michael@0: * the comment token's data. michael@0: */ michael@0: adjustDoubleHyphenAndAppendToLongStrBufAndErr(c); michael@0: /* michael@0: * Stay in the comment end state. michael@0: */ michael@0: continue; michael@0: case '\r': michael@0: adjustDoubleHyphenAndAppendToLongStrBufCarriageReturn(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: adjustDoubleHyphenAndAppendToLongStrBufLineFeed(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: case '!': michael@0: errHyphenHyphenBang(); michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.COMMENT_END_BANG, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Append two U+002D HYPHEN-MINUS (-) characters michael@0: * and the input character to the comment michael@0: * token's data. michael@0: */ michael@0: adjustDoubleHyphenAndAppendToLongStrBufAndErr(c); michael@0: /* michael@0: * Switch to the comment state. michael@0: */ michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case COMMENT_END_BANG: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Comment end bang state michael@0: * michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the comment michael@0: * token. michael@0: */ michael@0: emitComment(3, pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '-': michael@0: /* michael@0: * Append two U+002D HYPHEN-MINUS (-) characters michael@0: * and a U+0021 EXCLAMATION MARK (!) character michael@0: * to the comment token's data. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Switch to the comment end dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.COMMENT_END_DASH, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append two U+002D HYPHEN-MINUS michael@0: * (-) characters, a U+0021 EXCLAMATION MARK (!) michael@0: * character, and the input character to the michael@0: * comment token's data. Switch to the comment michael@0: * state. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Switch to the comment state. michael@0: */ michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case COMMENT_START_DASH: michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Comment start dash state michael@0: * michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Switch to the comment end michael@0: * state michael@0: */ michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.COMMENT_END, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: errPrematureEndOfComment(); michael@0: /* Emit the comment token. */ michael@0: emitComment(1, pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Append a U+002D HYPHEN-MINUS character (-) and michael@0: * the current input character to the comment michael@0: * token's data. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Switch to the comment state. michael@0: */ michael@0: state = transition(state, Tokenizer.COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: // XXX reorder point michael@0: case CDATA_START: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: if (index < 6) { // CDATA_LSQB.length michael@0: if (c == Tokenizer.CDATA_LSQB[index]) { michael@0: appendLongStrBuf(c); michael@0: } else { michael@0: errBogusComment(); michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: index++; michael@0: continue; michael@0: } else { michael@0: cstart = pos; // start coalescing michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.CDATA_SECTION, reconsume, pos); michael@0: break; // FALL THROUGH continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case CDATA_SECTION: michael@0: cdatasectionloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: switch (c) { michael@0: case ']': michael@0: flushChars(buf, pos); michael@0: state = transition(state, Tokenizer.CDATA_RSQB, reconsume, pos); michael@0: break cdatasectionloop; // FALL THROUGH michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: default: michael@0: continue; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case CDATA_RSQB: michael@0: cdatarsqb: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case ']': michael@0: state = transition(state, Tokenizer.CDATA_RSQB_RSQB, reconsume, pos); michael@0: break cdatarsqb; michael@0: default: michael@0: tokenHandler.characters(Tokenizer.RSQB_RSQB, 0, michael@0: 1); michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.CDATA_SECTION, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case CDATA_RSQB_RSQB: michael@0: cdatarsqbrsqb: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case ']': michael@0: // Saw a third ]. Emit one ] (logically the michael@0: // first one) and stay in this state to michael@0: // remember that the last two characters seen michael@0: // have been ]]. michael@0: tokenHandler.characters(Tokenizer.RSQB_RSQB, 0, 1); michael@0: continue; michael@0: case '>': michael@0: cstart = pos + 1; michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: tokenHandler.characters(Tokenizer.RSQB_RSQB, 0, 2); michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.CDATA_SECTION, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case ATTRIBUTE_VALUE_SINGLE_QUOTED: michael@0: attributevaluesinglequotedloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Switch to the after michael@0: * attribute value (quoted) state. michael@0: */ michael@0: addAttributeWithValue(); michael@0: michael@0: state = transition(state, Tokenizer.AFTER_ATTRIBUTE_VALUE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '&': michael@0: /* michael@0: * U+0026 AMPERSAND (&) Switch to the character michael@0: * reference in attribute value state, with the michael@0: * + additional allowed character being U+0027 michael@0: * APOSTROPHE ('). michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: setAdditionalAndRememberAmpersandLocation('\''); michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.CONSUME_CHARACTER_REFERENCE, reconsume, pos); michael@0: break attributevaluesinglequotedloop; michael@0: // continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current attribute's value. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the attribute value (double-quoted) michael@0: * state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case CONSUME_CHARACTER_REFERENCE: michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: if (c == '\u0000') { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * Unlike the definition is the spec, this state does not michael@0: * return a value and never requires the caller to michael@0: * backtrack. This state takes care of emitting characters michael@0: * or appending to the current attribute value. It also michael@0: * takes care of that in the case when consuming the michael@0: * character reference fails. michael@0: */ michael@0: /* michael@0: * This section defines how to consume a character michael@0: * reference. This definition is used when parsing character michael@0: * references in text and in attributes. michael@0: * michael@0: * The behavior depends on the identity of the next michael@0: * character (the one immediately after the U+0026 AMPERSAND michael@0: * character): michael@0: */ michael@0: switch (c) { michael@0: case ' ': michael@0: case '\t': michael@0: case '\n': michael@0: case '\r': // we'll reconsume! michael@0: case '\u000C': michael@0: case '<': michael@0: case '&': michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: case '#': michael@0: /* michael@0: * U+0023 NUMBER SIGN (#) Consume the U+0023 NUMBER michael@0: * SIGN. michael@0: */ michael@0: appendStrBuf('#'); michael@0: state = transition(state, Tokenizer.CONSUME_NCR, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: if (c == additional) { michael@0: emitOrAppendStrBuf(returnState); michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: if (c >= 'a' && c <= 'z') { michael@0: firstCharKey = c - 'a' + 26; michael@0: } else if (c >= 'A' && c <= 'Z') { michael@0: firstCharKey = c - 'A'; michael@0: } else { michael@0: // No match michael@0: /* michael@0: * If no match can be made, then this is a parse michael@0: * error. michael@0: */ michael@0: errNoNamedCharacterMatch(); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: // Didn't fail yet michael@0: appendStrBuf(c); michael@0: state = transition(state, Tokenizer.CHARACTER_REFERENCE_HILO_LOOKUP, reconsume, pos); michael@0: // FALL THROUGH continue stateloop; michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case CHARACTER_REFERENCE_HILO_LOOKUP: michael@0: { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: if (c == '\u0000') { michael@0: break stateloop; michael@0: } michael@0: /* michael@0: * The data structure is as follows: michael@0: * michael@0: * HILO_ACCEL is a two-dimensional int array whose major michael@0: * index corresponds to the second character of the michael@0: * character reference (code point as index) and the michael@0: * minor index corresponds to the first character of the michael@0: * character reference (packed so that A-Z runs from 0 michael@0: * to 25 and a-z runs from 26 to 51). This layout makes michael@0: * it easier to use the sparseness of the data structure michael@0: * to omit parts of it: The second dimension of the michael@0: * table is null when no character reference starts with michael@0: * the character corresponding to that row. michael@0: * michael@0: * The int value HILO_ACCEL (by these indeces) is zero michael@0: * if there exists no character reference starting with michael@0: * that two-letter prefix. Otherwise, the value is an michael@0: * int that packs two shorts so that the higher short is michael@0: * the index of the highest character reference name michael@0: * with that prefix in NAMES and the lower short michael@0: * corresponds to the index of the lowest character michael@0: * reference name with that prefix. (It happens that the michael@0: * first two character reference names share their michael@0: * prefix so the packed int cannot be 0 by packing the michael@0: * two shorts.) michael@0: * michael@0: * NAMES is an array of byte arrays where each byte michael@0: * array encodes the name of a character references as michael@0: * ASCII. The names omit the first two letters of the michael@0: * name. (Since storing the first two letters would be michael@0: * redundant with the data contained in HILO_ACCEL.) The michael@0: * entries are lexically sorted. michael@0: * michael@0: * For a given index in NAMES, the same index in VALUES michael@0: * contains the corresponding expansion as an array of michael@0: * two UTF-16 code units (either the character and michael@0: * U+0000 or a suggogate pair). michael@0: */ michael@0: int hilo = 0; michael@0: if (c <= 'z') { michael@0: @Const @NoLength int[] row = NamedCharactersAccel.HILO_ACCEL[c]; michael@0: if (row != null) { michael@0: hilo = row[firstCharKey]; michael@0: } michael@0: } michael@0: if (hilo == 0) { michael@0: /* michael@0: * If no match can be made, then this is a parse michael@0: * error. michael@0: */ michael@0: errNoNamedCharacterMatch(); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: // Didn't fail yet michael@0: appendStrBuf(c); michael@0: lo = hilo & 0xFFFF; michael@0: hi = hilo >> 16; michael@0: entCol = -1; michael@0: candidate = -1; michael@0: strBufMark = 0; michael@0: state = transition(state, Tokenizer.CHARACTER_REFERENCE_TAIL, reconsume, pos); michael@0: // FALL THROUGH continue stateloop; michael@0: } michael@0: case CHARACTER_REFERENCE_TAIL: michael@0: outer: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: if (c == '\u0000') { michael@0: break stateloop; michael@0: } michael@0: entCol++; michael@0: /* michael@0: * Consume the maximum number of characters possible, michael@0: * with the consumed characters matching one of the michael@0: * identifiers in the first column of the named michael@0: * character references table (in a case-sensitive michael@0: * manner). michael@0: */ michael@0: loloop: for (;;) { michael@0: if (hi < lo) { michael@0: break outer; michael@0: } michael@0: if (entCol == NamedCharacters.NAMES[lo].length()) { michael@0: candidate = lo; michael@0: strBufMark = strBufLen; michael@0: lo++; michael@0: } else if (entCol > NamedCharacters.NAMES[lo].length()) { michael@0: break outer; michael@0: } else if (c > NamedCharacters.NAMES[lo].charAt(entCol)) { michael@0: lo++; michael@0: } else { michael@0: break loloop; michael@0: } michael@0: } michael@0: michael@0: hiloop: for (;;) { michael@0: if (hi < lo) { michael@0: break outer; michael@0: } michael@0: if (entCol == NamedCharacters.NAMES[hi].length()) { michael@0: break hiloop; michael@0: } michael@0: if (entCol > NamedCharacters.NAMES[hi].length()) { michael@0: break outer; michael@0: } else if (c < NamedCharacters.NAMES[hi].charAt(entCol)) { michael@0: hi--; michael@0: } else { michael@0: break hiloop; michael@0: } michael@0: } michael@0: michael@0: if (c == ';') { michael@0: // If we see a semicolon, there cannot be a michael@0: // longer match. Break the loop. However, before michael@0: // breaking, take the longest match so far as the michael@0: // candidate, if we are just about to complete a michael@0: // match. michael@0: if (entCol + 1 == NamedCharacters.NAMES[lo].length()) { michael@0: candidate = lo; michael@0: strBufMark = strBufLen; michael@0: } michael@0: break outer; michael@0: } michael@0: michael@0: if (hi < lo) { michael@0: break outer; michael@0: } michael@0: appendStrBuf(c); michael@0: continue; michael@0: } michael@0: michael@0: if (candidate == -1) { michael@0: // reconsume deals with CR, LF or nul michael@0: /* michael@0: * If no match can be made, then this is a parse error. michael@0: */ michael@0: errNoNamedCharacterMatch(); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } else { michael@0: // c can't be CR, LF or nul if we got here michael@0: @Const @CharacterName String candidateName = NamedCharacters.NAMES[candidate]; michael@0: if (candidateName.length() == 0 michael@0: || candidateName.charAt(candidateName.length() - 1) != ';') { michael@0: /* michael@0: * If the last character matched is not a U+003B michael@0: * SEMICOLON (;), there is a parse error. michael@0: */ michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: /* michael@0: * If the entity is being consumed as part of an michael@0: * attribute, and the last character matched is michael@0: * not a U+003B SEMICOLON (;), michael@0: */ michael@0: char ch; michael@0: if (strBufMark == strBufLen) { michael@0: ch = c; michael@0: } else { michael@0: // if (strBufOffset != -1) { michael@0: // ch = buf[strBufOffset + strBufMark]; michael@0: // } else { michael@0: ch = strBuf[strBufMark]; michael@0: // } michael@0: } michael@0: if (ch == '=' || (ch >= '0' && ch <= '9') michael@0: || (ch >= 'A' && ch <= 'Z') michael@0: || (ch >= 'a' && ch <= 'z')) { michael@0: /* michael@0: * and the next character is either a U+003D michael@0: * EQUALS SIGN character (=) or in the range michael@0: * U+0030 DIGIT ZERO to U+0039 DIGIT NINE, michael@0: * U+0041 LATIN CAPITAL LETTER A to U+005A michael@0: * LATIN CAPITAL LETTER Z, or U+0061 LATIN michael@0: * SMALL LETTER A to U+007A LATIN SMALL michael@0: * LETTER Z, then, for historical reasons, michael@0: * all the characters that were matched michael@0: * after the U+0026 AMPERSAND (&) must be michael@0: * unconsumed, and nothing is returned. michael@0: */ michael@0: errNoNamedCharacterMatch(); michael@0: appendStrBufToLongStrBuf(); michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: errUnescapedAmpersandInterpretedAsCharacterReference(); michael@0: } else { michael@0: errNotSemicolonTerminated(); michael@0: } michael@0: } michael@0: michael@0: /* michael@0: * Otherwise, return a character token for the character michael@0: * corresponding to the entity name (as given by the michael@0: * second column of the named character references michael@0: * table). michael@0: */ michael@0: // CPPONLY: completedNamedCharacterReference(); michael@0: @Const @NoLength char[] val = NamedCharacters.VALUES[candidate]; michael@0: if ( michael@0: // [NOCPP[ michael@0: val.length == 1 michael@0: // ]NOCPP] michael@0: // CPPONLY: val[1] == 0 michael@0: ) { michael@0: emitOrAppendOne(val, returnState); michael@0: } else { michael@0: emitOrAppendTwo(val, returnState); michael@0: } michael@0: // this is so complicated! michael@0: if (strBufMark < strBufLen) { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: for (int i = strBufMark; i < strBufLen; i++) { michael@0: appendLongStrBuf(strBuf[i]); michael@0: } michael@0: } else { michael@0: tokenHandler.characters(strBuf, strBufMark, michael@0: strBufLen - strBufMark); michael@0: } michael@0: } michael@0: // Check if we broke out early with c being the last michael@0: // character that matched as opposed to being the michael@0: // first one that didn't match. In the case of an michael@0: // early break, the next run on text should start michael@0: // *after* the current character and the current michael@0: // character shouldn't be reconsumed. michael@0: boolean earlyBreak = (c == ';' && strBufMark == strBufLen); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = earlyBreak ? pos + 1 : pos; michael@0: } michael@0: reconsume = !earlyBreak; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: /* michael@0: * If the markup contains I'm ¬it; I tell you, the michael@0: * entity is parsed as "not", as in, I'm ¬it; I tell michael@0: * you. But if the markup was I'm ∉ I tell you, michael@0: * the entity would be parsed as "notin;", resulting in michael@0: * I'm ∉ I tell you. michael@0: */ michael@0: } michael@0: // XXX reorder point michael@0: case CONSUME_NCR: michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: prevValue = -1; michael@0: value = 0; michael@0: seenDigits = false; michael@0: /* michael@0: * The behavior further depends on the character after the michael@0: * U+0023 NUMBER SIGN: michael@0: */ michael@0: switch (c) { michael@0: case 'x': michael@0: case 'X': michael@0: michael@0: /* michael@0: * U+0078 LATIN SMALL LETTER X U+0058 LATIN CAPITAL michael@0: * LETTER X Consume the X. michael@0: * michael@0: * Follow the steps below, but using the range of michael@0: * characters U+0030 DIGIT ZERO through to U+0039 michael@0: * DIGIT NINE, U+0061 LATIN SMALL LETTER A through michael@0: * to U+0066 LATIN SMALL LETTER F, and U+0041 LATIN michael@0: * CAPITAL LETTER A, through to U+0046 LATIN CAPITAL michael@0: * LETTER F (in other words, 0-9, A-F, a-f). michael@0: * michael@0: * When it comes to interpreting the number, michael@0: * interpret it as a hexadecimal number. michael@0: */ michael@0: appendStrBuf(c); michael@0: state = transition(state, Tokenizer.HEX_NCR_LOOP, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Follow the steps below, but using michael@0: * the range of characters U+0030 DIGIT ZERO through michael@0: * to U+0039 DIGIT NINE (i.e. just 0-9). michael@0: * michael@0: * When it comes to interpreting the number, michael@0: * interpret it as a decimal number. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.DECIMAL_NRC_LOOP, reconsume, pos); michael@0: // FALL THROUGH continue stateloop; michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case DECIMAL_NRC_LOOP: michael@0: decimalloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: // Deal with overflow gracefully michael@0: if (value < prevValue) { michael@0: value = 0x110000; // Value above Unicode range but michael@0: // within int michael@0: // range michael@0: } michael@0: prevValue = value; michael@0: /* michael@0: * Consume as many characters as match the range of michael@0: * characters given above. michael@0: */ michael@0: if (c >= '0' && c <= '9') { michael@0: seenDigits = true; michael@0: value *= 10; michael@0: value += c - '0'; michael@0: continue; michael@0: } else if (c == ';') { michael@0: if (seenDigits) { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos + 1; michael@0: } michael@0: state = transition(state, Tokenizer.HANDLE_NCR_VALUE, reconsume, pos); michael@0: // FALL THROUGH continue stateloop; michael@0: break decimalloop; michael@0: } else { michael@0: errNoDigitsInNCR(); michael@0: appendStrBuf(';'); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos + 1; michael@0: } michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } else { michael@0: /* michael@0: * If no characters match the range, then don't michael@0: * consume any characters (and unconsume the U+0023 michael@0: * NUMBER SIGN character and, if appropriate, the X michael@0: * character). This is a parse error; nothing is michael@0: * returned. michael@0: * michael@0: * Otherwise, if the next character is a U+003B michael@0: * SEMICOLON, consume that too. If it isn't, there michael@0: * is a parse error. michael@0: */ michael@0: if (!seenDigits) { michael@0: errNoDigitsInNCR(); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } else { michael@0: errCharRefLacksSemicolon(); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.HANDLE_NCR_VALUE, reconsume, pos); michael@0: // FALL THROUGH continue stateloop; michael@0: break decimalloop; michael@0: } michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case HANDLE_NCR_VALUE: michael@0: // WARNING previous state sets reconsume michael@0: // XXX inline this case if the method size can take it michael@0: handleNcrValue(returnState); michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: // XXX reorder point michael@0: case HEX_NCR_LOOP: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: // Deal with overflow gracefully michael@0: if (value < prevValue) { michael@0: value = 0x110000; // Value above Unicode range but michael@0: // within int michael@0: // range michael@0: } michael@0: prevValue = value; michael@0: /* michael@0: * Consume as many characters as match the range of michael@0: * characters given above. michael@0: */ michael@0: if (c >= '0' && c <= '9') { michael@0: seenDigits = true; michael@0: value *= 16; michael@0: value += c - '0'; michael@0: continue; michael@0: } else if (c >= 'A' && c <= 'F') { michael@0: seenDigits = true; michael@0: value *= 16; michael@0: value += c - 'A' + 10; michael@0: continue; michael@0: } else if (c >= 'a' && c <= 'f') { michael@0: seenDigits = true; michael@0: value *= 16; michael@0: value += c - 'a' + 10; michael@0: continue; michael@0: } else if (c == ';') { michael@0: if (seenDigits) { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos + 1; michael@0: } michael@0: state = transition(state, Tokenizer.HANDLE_NCR_VALUE, reconsume, pos); michael@0: continue stateloop; michael@0: } else { michael@0: errNoDigitsInNCR(); michael@0: appendStrBuf(';'); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos + 1; michael@0: } michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } else { michael@0: /* michael@0: * If no characters match the range, then don't michael@0: * consume any characters (and unconsume the U+0023 michael@0: * NUMBER SIGN character and, if appropriate, the X michael@0: * character). This is a parse error; nothing is michael@0: * returned. michael@0: * michael@0: * Otherwise, if the next character is a U+003B michael@0: * SEMICOLON, consume that too. If it isn't, there michael@0: * is a parse error. michael@0: */ michael@0: if (!seenDigits) { michael@0: errNoDigitsInNCR(); michael@0: emitOrAppendStrBuf(returnState); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } else { michael@0: errCharRefLacksSemicolon(); michael@0: if ((returnState & DATA_AND_RCDATA_MASK) == 0) { michael@0: cstart = pos; michael@0: } michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.HANDLE_NCR_VALUE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case PLAINTEXT: michael@0: plaintextloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: switch (c) { michael@0: case '\u0000': michael@0: emitPlaintextReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Stay in the michael@0: * RAWTEXT state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case CLOSE_TAG_OPEN: michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Otherwise, if the content model flag is set to the PCDATA michael@0: * state, or if the next few characters do match that tag michael@0: * name, consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '>': michael@0: /* U+003E GREATER-THAN SIGN (>) Parse error. */ michael@0: errLtSlashGt(); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: cstart = pos + 1; michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: /* Anything else Parse error. */ michael@0: errGarbageAfterLtSlash(); michael@0: /* michael@0: * Switch to the bogus comment state. michael@0: */ michael@0: clearLongStrBufAndAppend('\n'); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: /* Anything else Parse error. */ michael@0: errGarbageAfterLtSlash(); michael@0: /* michael@0: * Switch to the bogus comment state. michael@0: */ michael@0: clearLongStrBufAndAppend('\n'); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: if (c >= 'A' && c <= 'Z') { michael@0: c += 0x20; michael@0: } michael@0: if (c >= 'a' && c <= 'z') { michael@0: /* michael@0: * U+0061 LATIN SMALL LETTER A through to U+007A michael@0: * LATIN SMALL LETTER Z Create a new end tag michael@0: * token, michael@0: */ michael@0: endTag = true; michael@0: /* michael@0: * set its tag name to the input character, michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: /* michael@0: * then switch to the tag name state. (Don't michael@0: * emit the token yet; further details will be michael@0: * filled in before it is emitted.) michael@0: */ michael@0: state = transition(state, Tokenizer.TAG_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: } else { michael@0: /* Anything else Parse error. */ michael@0: errGarbageAfterLtSlash(); michael@0: /* michael@0: * Switch to the bogus comment state. michael@0: */ michael@0: clearLongStrBufAndAppend(c); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case RCDATA: michael@0: rcdataloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: switch (c) { michael@0: case '&': michael@0: /* michael@0: * U+0026 AMPERSAND (&) Switch to the character michael@0: * reference in RCDATA state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: clearStrBufAndAppend(c); michael@0: additional = '\u0000'; michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.CONSUME_CHARACTER_REFERENCE, reconsume, pos); michael@0: continue stateloop; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the michael@0: * RCDATA less-than sign state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.RAWTEXT_RCDATA_LESS_THAN_SIGN, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Emit the current input character as a michael@0: * character token. Stay in the RCDATA state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case RAWTEXT: michael@0: rawtextloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: switch (c) { michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the michael@0: * RAWTEXT less-than sign state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.RAWTEXT_RCDATA_LESS_THAN_SIGN, reconsume, pos); michael@0: break rawtextloop; michael@0: // FALL THRU continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Emit the current input character as a michael@0: * character token. Stay in the RAWTEXT state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX fallthru don't reorder michael@0: case RAWTEXT_RCDATA_LESS_THAN_SIGN: michael@0: rawtextrcdatalessthansignloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Set the temporary buffer michael@0: * to the empty string. Switch to the script michael@0: * data end tag open state. michael@0: */ michael@0: index = 0; michael@0: clearStrBuf(); michael@0: state = transition(state, Tokenizer.NON_DATA_END_TAG_NAME, reconsume, pos); michael@0: break rawtextrcdatalessthansignloop; michael@0: // FALL THRU continue stateloop; michael@0: default: michael@0: /* michael@0: * Otherwise, emit a U+003C LESS-THAN SIGN michael@0: * character token michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: /* michael@0: * and reconsume the current input character in michael@0: * the data state. michael@0: */ michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX fall thru. don't reorder. michael@0: case NON_DATA_END_TAG_NAME: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * ASSERT! when entering this state, set index to 0 and michael@0: * call clearStrBuf() assert (contentModelElement != michael@0: * null); Let's implement the above without lookahead. michael@0: * strBuf is the 'temporary buffer'. michael@0: */ michael@0: if (index < endTagExpectationAsArray.length) { michael@0: char e = endTagExpectationAsArray[index]; michael@0: char folded = c; michael@0: if (c >= 'A' && c <= 'Z') { michael@0: folded += 0x20; michael@0: } michael@0: if (folded != e) { michael@0: // [NOCPP[ michael@0: errHtml4LtSlashInRcdata(folded); michael@0: // ]NOCPP] michael@0: tokenHandler.characters(Tokenizer.LT_SOLIDUS, michael@0: 0, 2); michael@0: emitStrBuf(); michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: appendStrBuf(c); michael@0: index++; michael@0: continue; michael@0: } else { michael@0: endTag = true; michael@0: // XXX replace contentModelElement with different michael@0: // type michael@0: tagName = endTagExpectation; michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE michael@0: * FEED (LF) U+000C FORM FEED (FF) U+0020 michael@0: * SPACE If the current end tag token is an michael@0: * appropriate end tag token, then switch to michael@0: * the before attribute name state. michael@0: */ michael@0: state = transition(state, Tokenizer.BEFORE_ATTRIBUTE_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) If the current end tag michael@0: * token is an appropriate end tag token, michael@0: * then switch to the self-closing start tag michael@0: * state. michael@0: */ michael@0: state = transition(state, Tokenizer.SELF_CLOSING_START_TAG, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) If the michael@0: * current end tag token is an appropriate michael@0: * end tag token, then emit the current tag michael@0: * token and switch to the data state. michael@0: */ michael@0: state = transition(state, emitCurrentTagToken(false, pos), reconsume, pos); michael@0: if (shouldSuspend) { michael@0: break stateloop; michael@0: } michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character michael@0: * token, a U+002F SOLIDUS character token, michael@0: * a character token for each of the michael@0: * characters in the temporary buffer (in michael@0: * the order they were added to the buffer), michael@0: * and reconsume the current input character michael@0: * in the RAWTEXT state. michael@0: */ michael@0: // [NOCPP[ michael@0: errWarnLtSlashInRcdata(); michael@0: // ]NOCPP] michael@0: tokenHandler.characters( michael@0: Tokenizer.LT_SOLIDUS, 0, 2); michael@0: emitStrBuf(); michael@0: if (c == '\u0000') { michael@0: emitReplacementCharacter(buf, pos); michael@0: } else { michael@0: cstart = pos; // don't drop the michael@0: // character michael@0: } michael@0: state = transition(state, returnState, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: // BEGIN HOTSPOT WORKAROUND michael@0: case BOGUS_COMMENT: michael@0: boguscommentloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume every character up to and including the first michael@0: * U+003E GREATER-THAN SIGN character (>) or the end of michael@0: * the file (EOF), whichever comes first. Emit a comment michael@0: * token whose data is the concatenation of all the michael@0: * characters starting from and including the character michael@0: * that caused the state machine to switch into the michael@0: * bogus comment state, up to and including the michael@0: * character immediately before the last consumed michael@0: * character (i.e. up to the character just before the michael@0: * U+003E or EOF character). (If the comment was started michael@0: * by the end of the file (EOF), the token is empty.) michael@0: * michael@0: * Switch to the data state. michael@0: * michael@0: * If the end of the file was reached, reconsume the EOF michael@0: * character. michael@0: */ michael@0: switch (c) { michael@0: case '>': michael@0: emitComment(0, pos); michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '-': michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT_HYPHEN, reconsume, pos); michael@0: break boguscommentloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: appendLongStrBuf(c); michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BOGUS_COMMENT_HYPHEN: michael@0: boguscommenthyphenloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case '>': michael@0: // [NOCPP[ michael@0: maybeAppendSpaceToBogusComment(); michael@0: // ]NOCPP] michael@0: emitComment(0, pos); michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '-': michael@0: appendSecondHyphenToBogusComment(); michael@0: continue boguscommenthyphenloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: appendLongStrBuf(c); michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case SCRIPT_DATA: michael@0: scriptdataloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: switch (c) { michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the michael@0: * script data less-than sign state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: returnState = state; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_LESS_THAN_SIGN, reconsume, pos); michael@0: break scriptdataloop; // FALL THRU continue michael@0: // stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Stay in the michael@0: * script data state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_LESS_THAN_SIGN: michael@0: scriptdatalessthansignloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Set the temporary buffer michael@0: * to the empty string. Switch to the script michael@0: * data end tag open state. michael@0: */ michael@0: index = 0; michael@0: clearStrBuf(); michael@0: state = transition(state, Tokenizer.NON_DATA_END_TAG_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: case '!': michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: cstart = pos; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPE_START, reconsume, pos); michael@0: break scriptdatalessthansignloop; // FALL THRU michael@0: // continue michael@0: // stateloop; michael@0: default: michael@0: /* michael@0: * Otherwise, emit a U+003C LESS-THAN SIGN michael@0: * character token michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: /* michael@0: * and reconsume the current input character in michael@0: * the data state. michael@0: */ michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_ESCAPE_START: michael@0: scriptdataescapestartloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Switch to the michael@0: * script data escape start dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPE_START_DASH, reconsume, pos); michael@0: break scriptdataescapestartloop; // FALL THRU michael@0: // continue michael@0: // stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Reconsume the current input michael@0: * character in the script data state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_ESCAPE_START_DASH: michael@0: scriptdataescapestartdashloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Switch to the michael@0: * script data escaped dash dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED_DASH_DASH, reconsume, pos); michael@0: break scriptdataescapestartdashloop; michael@0: // continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Reconsume the current input michael@0: * character in the script data state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_ESCAPED_DASH_DASH: michael@0: scriptdataescapeddashdashloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Stay in the michael@0: * script data escaped dash dash state. michael@0: */ michael@0: continue; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the michael@0: * script data escaped less-than sign state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED_LESS_THAN_SIGN, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit a U+003E michael@0: * GREATER-THAN SIGN character token. Switch to michael@0: * the script data state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: break scriptdataescapeddashdashloop; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Switch to the michael@0: * script data escaped state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: break scriptdataescapeddashdashloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_ESCAPED: michael@0: scriptdataescapedloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Switch to the michael@0: * script data escaped dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED_DASH, reconsume, pos); michael@0: break scriptdataescapedloop; // FALL THRU michael@0: // continue michael@0: // stateloop; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the michael@0: * script data escaped less-than sign state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED_LESS_THAN_SIGN, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Stay in the michael@0: * script data escaped state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_ESCAPED_DASH: michael@0: scriptdataescapeddashloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Switch to the michael@0: * script data escaped dash dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED_DASH_DASH, reconsume, pos); michael@0: continue stateloop; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Switch to the michael@0: * script data escaped less-than sign state. michael@0: */ michael@0: flushChars(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED_LESS_THAN_SIGN, reconsume, pos); michael@0: break scriptdataescapeddashloop; michael@0: // continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Switch to the michael@0: * script data escaped state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_ESCAPED_LESS_THAN_SIGN: michael@0: scriptdataescapedlessthanloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Set the temporary buffer michael@0: * to the empty string. Switch to the script michael@0: * data escaped end tag open state. michael@0: */ michael@0: index = 0; michael@0: clearStrBuf(); michael@0: returnState = Tokenizer.SCRIPT_DATA_ESCAPED; michael@0: state = transition(state, Tokenizer.NON_DATA_END_TAG_NAME, reconsume, pos); michael@0: continue stateloop; michael@0: case 'S': michael@0: case 's': michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Emit a U+003C michael@0: * LESS-THAN SIGN character token and the michael@0: * current input character as a character token. michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: cstart = pos; michael@0: index = 1; michael@0: /* michael@0: * Set the temporary buffer to the empty string. michael@0: * Append the lowercase version of the current michael@0: * input character (add 0x0020 to the michael@0: * character's code point) to the temporary michael@0: * buffer. Switch to the script data double michael@0: * escape start state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPE_START, reconsume, pos); michael@0: break scriptdataescapedlessthanloop; michael@0: // continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Emit a U+003C LESS-THAN SIGN michael@0: * character token and reconsume the current michael@0: * input character in the script data escaped michael@0: * state. michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: cstart = pos; michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_DOUBLE_ESCAPE_START: michael@0: scriptdatadoubleescapestartloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: assert index > 0; michael@0: if (index < 6) { // SCRIPT_ARR.length michael@0: char folded = c; michael@0: if (c >= 'A' && c <= 'Z') { michael@0: folded += 0x20; michael@0: } michael@0: if (folded != Tokenizer.SCRIPT_ARR[index]) { michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: index++; michael@0: continue; michael@0: } michael@0: switch (c) { michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: case '/': michael@0: case '>': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * U+002F SOLIDUS (/) U+003E GREATER-THAN SIGN michael@0: * (>) Emit the current input character as a michael@0: * character token. If the temporary buffer is michael@0: * the string "script", then switch to the michael@0: * script data double escaped state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: break scriptdatadoubleescapestartloop; michael@0: // continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Reconsume the current input michael@0: * character in the script data escaped state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED: michael@0: scriptdatadoubleescapedloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Switch to the michael@0: * script data double escaped dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED_DASH, reconsume, pos); michael@0: break scriptdatadoubleescapedloop; // FALL THRU michael@0: // continue michael@0: // stateloop; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Emit a U+003C michael@0: * LESS-THAN SIGN character token. Switch to the michael@0: * script data double escaped less-than sign michael@0: * state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED_LESS_THAN_SIGN, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: continue; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Stay in the michael@0: * script data double escaped state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED_DASH: michael@0: scriptdatadoubleescapeddashloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Switch to the michael@0: * script data double escaped dash dash state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED_DASH_DASH, reconsume, pos); michael@0: break scriptdatadoubleescapeddashloop; michael@0: // continue stateloop; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Emit a U+003C michael@0: * LESS-THAN SIGN character token. Switch to the michael@0: * script data double escaped less-than sign michael@0: * state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED_LESS_THAN_SIGN, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Switch to the michael@0: * script data double escaped state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED_DASH_DASH: michael@0: scriptdatadoubleescapeddashdashloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '-': michael@0: /* michael@0: * U+002D HYPHEN-MINUS (-) Emit a U+002D michael@0: * HYPHEN-MINUS character token. Stay in the michael@0: * script data double escaped dash dash state. michael@0: */ michael@0: continue; michael@0: case '<': michael@0: /* michael@0: * U+003C LESS-THAN SIGN (<) Emit a U+003C michael@0: * LESS-THAN SIGN character token. Switch to the michael@0: * script data double escaped less-than sign michael@0: * state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED_LESS_THAN_SIGN, reconsume, pos); michael@0: break scriptdatadoubleescapeddashdashloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit a U+003E michael@0: * GREATER-THAN SIGN character token. Switch to michael@0: * the script data state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: emitReplacementCharacter(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: default: michael@0: /* michael@0: * Anything else Emit the current input michael@0: * character as a character token. Switch to the michael@0: * script data double escaped state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_DOUBLE_ESCAPED_LESS_THAN_SIGN: michael@0: scriptdatadoubleescapedlessthanloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '/': michael@0: /* michael@0: * U+002F SOLIDUS (/) Emit a U+002F SOLIDUS michael@0: * character token. Set the temporary buffer to michael@0: * the empty string. Switch to the script data michael@0: * double escape end state. michael@0: */ michael@0: index = 0; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPE_END, reconsume, pos); michael@0: break scriptdatadoubleescapedlessthanloop; michael@0: default: michael@0: /* michael@0: * Anything else Reconsume the current input michael@0: * character in the script data double escaped michael@0: * state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // WARNING FALLTHRU CASE TRANSITION: DON'T REORDER michael@0: case SCRIPT_DATA_DOUBLE_ESCAPE_END: michael@0: scriptdatadoubleescapeendloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: if (index < 6) { // SCRIPT_ARR.length michael@0: char folded = c; michael@0: if (c >= 'A' && c <= 'Z') { michael@0: folded += 0x20; michael@0: } michael@0: if (folded != Tokenizer.SCRIPT_ARR[index]) { michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: index++; michael@0: continue; michael@0: } michael@0: switch (c) { michael@0: case '\r': michael@0: emitCarriageReturn(buf, pos); michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: case '/': michael@0: case '>': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * U+002F SOLIDUS (/) U+003E GREATER-THAN SIGN michael@0: * (>) Emit the current input character as a michael@0: * character token. If the temporary buffer is michael@0: * the string "script", then switch to the michael@0: * script data escaped state. michael@0: */ michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Reconsume the current input character in the michael@0: * script data double escaped state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.SCRIPT_DATA_DOUBLE_ESCAPED, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case MARKUP_DECLARATION_OCTYPE: michael@0: markupdeclarationdoctypeloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: if (index < 6) { // OCTYPE.length michael@0: char folded = c; michael@0: if (c >= 'A' && c <= 'Z') { michael@0: folded += 0x20; michael@0: } michael@0: if (folded == Tokenizer.OCTYPE[index]) { michael@0: appendLongStrBuf(c); michael@0: } else { michael@0: errBogusComment(); michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BOGUS_COMMENT, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: index++; michael@0: continue; michael@0: } else { michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.DOCTYPE, reconsume, pos); michael@0: break markupdeclarationdoctypeloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case DOCTYPE: michael@0: doctypeloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: initDoctypeFields(); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the before DOCTYPE name state. michael@0: */ michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_NAME, reconsume, pos); michael@0: break doctypeloop; michael@0: // continue stateloop; michael@0: default: michael@0: /* michael@0: * Anything else Parse error. michael@0: */ michael@0: errMissingSpaceBeforeDoctypeName(); michael@0: /* michael@0: * Reconsume the current character in the before michael@0: * DOCTYPE name state. michael@0: */ michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_NAME, reconsume, pos); michael@0: break doctypeloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BEFORE_DOCTYPE_NAME: michael@0: beforedoctypenameloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the before DOCTYPE name state. michael@0: */ michael@0: continue; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Parse error. michael@0: */ michael@0: errNamelessDoctype(); michael@0: /* michael@0: * Create a new DOCTYPE token. Set its michael@0: * force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit the token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: if (c >= 'A' && c <= 'Z') { michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Create a michael@0: * new DOCTYPE token. Set the token's name michael@0: * to the lowercase version of the input michael@0: * character (add 0x0020 to the character's michael@0: * code point). michael@0: */ michael@0: c += 0x20; michael@0: } michael@0: /* Anything else Create a new DOCTYPE token. */ michael@0: /* michael@0: * Set the token's name name to the current michael@0: * input character. michael@0: */ michael@0: clearStrBufAndAppend(c); michael@0: /* michael@0: * Switch to the DOCTYPE name state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_NAME, reconsume, pos); michael@0: break beforedoctypenameloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case DOCTYPE_NAME: michael@0: doctypenameloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: strBufToDoctypeName(); michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_NAME, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the after DOCTYPE name state. michael@0: */ michael@0: strBufToDoctypeName(); michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_NAME, reconsume, pos); michael@0: break doctypenameloop; michael@0: // continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * DOCTYPE token. michael@0: */ michael@0: strBufToDoctypeName(); michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * U+0041 LATIN CAPITAL LETTER A through to michael@0: * U+005A LATIN CAPITAL LETTER Z Append the michael@0: * lowercase version of the input character (add michael@0: * 0x0020 to the character's code point) to the michael@0: * current DOCTYPE token's name. michael@0: */ michael@0: if (c >= 'A' && c <= 'Z') { michael@0: c += 0x0020; michael@0: } michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current DOCTYPE token's michael@0: * name. michael@0: */ michael@0: appendStrBuf(c); michael@0: /* michael@0: * Stay in the DOCTYPE name state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case AFTER_DOCTYPE_NAME: michael@0: afterdoctypenameloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the after DOCTYPE name state. michael@0: */ michael@0: continue; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case 'p': michael@0: case 'P': michael@0: index = 0; michael@0: state = transition(state, Tokenizer.DOCTYPE_UBLIC, reconsume, pos); michael@0: break afterdoctypenameloop; michael@0: // continue stateloop; michael@0: case 's': michael@0: case 'S': michael@0: index = 0; michael@0: state = transition(state, Tokenizer.DOCTYPE_YSTEM, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Otherwise, this is the parse error. michael@0: */ michael@0: bogusDoctype(); michael@0: michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case DOCTYPE_UBLIC: michael@0: doctypeublicloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * If the six characters starting from the current input michael@0: * character are an ASCII case-insensitive match for the michael@0: * word "PUBLIC", then consume those characters and michael@0: * switch to the before DOCTYPE public identifier state. michael@0: */ michael@0: if (index < 5) { // UBLIC.length michael@0: char folded = c; michael@0: if (c >= 'A' && c <= 'Z') { michael@0: folded += 0x20; michael@0: } michael@0: if (folded != Tokenizer.UBLIC[index]) { michael@0: bogusDoctype(); michael@0: // forceQuirks = true; michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: index++; michael@0: continue; michael@0: } else { michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_PUBLIC_KEYWORD, reconsume, pos); michael@0: break doctypeublicloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case AFTER_DOCTYPE_PUBLIC_KEYWORD: michael@0: afterdoctypepublickeywordloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_PUBLIC_IDENTIFIER, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the before DOCTYPE public michael@0: * identifier state. michael@0: */ michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_PUBLIC_IDENTIFIER, reconsume, pos); michael@0: break afterdoctypepublickeywordloop; michael@0: // FALL THROUGH continue stateloop michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Parse Error. michael@0: */ michael@0: errNoSpaceBetweenDoctypePublicKeywordAndQuote(); michael@0: /* michael@0: * Set the DOCTYPE token's public identifier to michael@0: * the empty string (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE public identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_PUBLIC_IDENTIFIER_DOUBLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Parse Error. michael@0: */ michael@0: errNoSpaceBetweenDoctypePublicKeywordAndQuote(); michael@0: /* michael@0: * Set the DOCTYPE token's public identifier to michael@0: * the empty string (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE public identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_PUBLIC_IDENTIFIER_SINGLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* U+003E GREATER-THAN SIGN (>) Parse error. */ michael@0: errExpectedPublicId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: bogusDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BEFORE_DOCTYPE_PUBLIC_IDENTIFIER: michael@0: beforedoctypepublicidentifierloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the before DOCTYPE public identifier michael@0: * state. michael@0: */ michael@0: continue; michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Set the DOCTYPE michael@0: * token's public identifier to the empty string michael@0: * (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE public identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_PUBLIC_IDENTIFIER_DOUBLE_QUOTED, reconsume, pos); michael@0: break beforedoctypepublicidentifierloop; michael@0: // continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Set the DOCTYPE token's michael@0: * public identifier to the empty string (not michael@0: * missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE public identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_PUBLIC_IDENTIFIER_SINGLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* U+003E GREATER-THAN SIGN (>) Parse error. */ michael@0: errExpectedPublicId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: bogusDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case DOCTYPE_PUBLIC_IDENTIFIER_DOUBLE_QUOTED: michael@0: doctypepublicidentifierdoublequotedloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Switch to the after michael@0: * DOCTYPE public identifier state. michael@0: */ michael@0: publicIdentifier = longStrBufToString(); michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_PUBLIC_IDENTIFIER, reconsume, pos); michael@0: break doctypepublicidentifierdoublequotedloop; michael@0: // continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Parse error. michael@0: */ michael@0: errGtInPublicId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: publicIdentifier = longStrBufToString(); michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current DOCTYPE token's michael@0: * public identifier. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the DOCTYPE public identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case AFTER_DOCTYPE_PUBLIC_IDENTIFIER: michael@0: afterdoctypepublicidentifierloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: state = transition(state, Tokenizer.BETWEEN_DOCTYPE_PUBLIC_AND_SYSTEM_IDENTIFIERS, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the between DOCTYPE public and michael@0: * system identifiers state. michael@0: */ michael@0: state = transition(state, Tokenizer.BETWEEN_DOCTYPE_PUBLIC_AND_SYSTEM_IDENTIFIERS, reconsume, pos); michael@0: break afterdoctypepublicidentifierloop; michael@0: // continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Parse error. michael@0: */ michael@0: errNoSpaceBetweenPublicAndSystemIds(); michael@0: /* michael@0: * Set the DOCTYPE token's system identifier to michael@0: * the empty string (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE system identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Parse error. michael@0: */ michael@0: errNoSpaceBetweenPublicAndSystemIds(); michael@0: /* michael@0: * Set the DOCTYPE token's system identifier to michael@0: * the empty string (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE system identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: bogusDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BETWEEN_DOCTYPE_PUBLIC_AND_SYSTEM_IDENTIFIERS: michael@0: betweendoctypepublicandsystemidentifiersloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the between DOCTYPE public and system michael@0: * identifiers state. michael@0: */ michael@0: continue; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Set the DOCTYPE michael@0: * token's system identifier to the empty string michael@0: * (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE system identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED, reconsume, pos); michael@0: break betweendoctypepublicandsystemidentifiersloop; michael@0: // continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Set the DOCTYPE token's michael@0: * system identifier to the empty string (not michael@0: * missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE system identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: bogusDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED: michael@0: doctypesystemidentifierdoublequotedloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Switch to the after michael@0: * DOCTYPE system identifier state. michael@0: */ michael@0: systemIdentifier = longStrBufToString(); michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_SYSTEM_IDENTIFIER, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Parse error. michael@0: */ michael@0: errGtInSystemId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: systemIdentifier = longStrBufToString(); michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current DOCTYPE token's michael@0: * system identifier. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the DOCTYPE system identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case AFTER_DOCTYPE_SYSTEM_IDENTIFIER: michael@0: afterdoctypesystemidentifierloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the after DOCTYPE system identifier state. michael@0: */ michael@0: continue; michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit the current michael@0: * DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. (This does michael@0: * not set the DOCTYPE token's force-quirks flag michael@0: * to on.) michael@0: */ michael@0: bogusDoctypeWithoutQuirks(); michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: break afterdoctypesystemidentifierloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BOGUS_DOCTYPE: michael@0: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '>': michael@0: /* michael@0: * U+003E GREATER-THAN SIGN (>) Emit that michael@0: * DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Stay in the bogus DOCTYPE michael@0: * state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case DOCTYPE_YSTEM: michael@0: doctypeystemloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Otherwise, if the six characters starting from the michael@0: * current input character are an ASCII case-insensitive michael@0: * match for the word "SYSTEM", then consume those michael@0: * characters and switch to the before DOCTYPE system michael@0: * identifier state. michael@0: */ michael@0: if (index < 5) { // YSTEM.length michael@0: char folded = c; michael@0: if (c >= 'A' && c <= 'Z') { michael@0: folded += 0x20; michael@0: } michael@0: if (folded != Tokenizer.YSTEM[index]) { michael@0: bogusDoctype(); michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: index++; michael@0: continue stateloop; michael@0: } else { michael@0: reconsume = true; michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_SYSTEM_KEYWORD, reconsume, pos); michael@0: break doctypeystemloop; michael@0: // continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case AFTER_DOCTYPE_SYSTEM_KEYWORD: michael@0: afterdoctypesystemkeywordloop: for (;;) { michael@0: if (reconsume) { michael@0: reconsume = false; michael@0: } else { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: } michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_SYSTEM_IDENTIFIER, reconsume, pos); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE michael@0: * Switch to the before DOCTYPE public michael@0: * identifier state. michael@0: */ michael@0: state = transition(state, Tokenizer.BEFORE_DOCTYPE_SYSTEM_IDENTIFIER, reconsume, pos); michael@0: break afterdoctypesystemkeywordloop; michael@0: // FALL THROUGH continue stateloop michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Parse Error. michael@0: */ michael@0: errNoSpaceBetweenDoctypeSystemKeywordAndQuote(); michael@0: /* michael@0: * Set the DOCTYPE token's system identifier to michael@0: * the empty string (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE public identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Parse Error. michael@0: */ michael@0: errNoSpaceBetweenDoctypeSystemKeywordAndQuote(); michael@0: /* michael@0: * Set the DOCTYPE token's public identifier to michael@0: * the empty string (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE public identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: /* U+003E GREATER-THAN SIGN (>) Parse error. */ michael@0: errExpectedPublicId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: bogusDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case BEFORE_DOCTYPE_SYSTEM_IDENTIFIER: michael@0: beforedoctypesystemidentifierloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\r': michael@0: silentCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: silentLineFeed(); michael@0: // fall thru michael@0: case ' ': michael@0: case '\t': michael@0: case '\u000C': michael@0: /* michael@0: * U+0009 CHARACTER TABULATION U+000A LINE FEED michael@0: * (LF) U+000C FORM FEED (FF) U+0020 SPACE Stay michael@0: * in the before DOCTYPE system identifier michael@0: * state. michael@0: */ michael@0: continue; michael@0: case '"': michael@0: /* michael@0: * U+0022 QUOTATION MARK (") Set the DOCTYPE michael@0: * token's system identifier to the empty string michael@0: * (not missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE system identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED, reconsume, pos); michael@0: continue stateloop; michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Set the DOCTYPE token's michael@0: * system identifier to the empty string (not michael@0: * missing), michael@0: */ michael@0: clearLongStrBuf(); michael@0: /* michael@0: * then switch to the DOCTYPE system identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: state = transition(state, Tokenizer.DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED, reconsume, pos); michael@0: break beforedoctypesystemidentifierloop; michael@0: // continue stateloop; michael@0: case '>': michael@0: /* U+003E GREATER-THAN SIGN (>) Parse error. */ michael@0: errExpectedSystemId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: bogusDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: // done by bogusDoctype(); michael@0: /* michael@0: * Switch to the bogus DOCTYPE state. michael@0: */ michael@0: state = transition(state, Tokenizer.BOGUS_DOCTYPE, reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: } michael@0: // FALLTHRU DON'T REORDER michael@0: case DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Switch to the after michael@0: * DOCTYPE system identifier state. michael@0: */ michael@0: systemIdentifier = longStrBufToString(); michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_SYSTEM_IDENTIFIER, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: errGtInSystemId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: systemIdentifier = longStrBufToString(); michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current DOCTYPE token's michael@0: * system identifier. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the DOCTYPE system identifier michael@0: * (double-quoted) state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case DOCTYPE_PUBLIC_IDENTIFIER_SINGLE_QUOTED: michael@0: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: /* michael@0: * Consume the next input character: michael@0: */ michael@0: switch (c) { michael@0: case '\'': michael@0: /* michael@0: * U+0027 APOSTROPHE (') Switch to the after michael@0: * DOCTYPE public identifier state. michael@0: */ michael@0: publicIdentifier = longStrBufToString(); michael@0: state = transition(state, Tokenizer.AFTER_DOCTYPE_PUBLIC_IDENTIFIER, reconsume, pos); michael@0: continue stateloop; michael@0: case '>': michael@0: errGtInPublicId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: publicIdentifier = longStrBufToString(); michael@0: emitDoctypeToken(pos); michael@0: /* michael@0: * Switch to the data state. michael@0: */ michael@0: state = transition(state, Tokenizer.DATA, reconsume, pos); michael@0: continue stateloop; michael@0: case '\r': michael@0: appendLongStrBufCarriageReturn(); michael@0: break stateloop; michael@0: case '\n': michael@0: appendLongStrBufLineFeed(); michael@0: continue; michael@0: case '\u0000': michael@0: c = '\uFFFD'; michael@0: // fall thru michael@0: default: michael@0: /* michael@0: * Anything else Append the current input michael@0: * character to the current DOCTYPE token's michael@0: * public identifier. michael@0: */ michael@0: appendLongStrBuf(c); michael@0: /* michael@0: * Stay in the DOCTYPE public identifier michael@0: * (single-quoted) state. michael@0: */ michael@0: continue; michael@0: } michael@0: } michael@0: // XXX reorder point michael@0: case PROCESSING_INSTRUCTION: michael@0: processinginstructionloop: for (;;) { michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case '?': michael@0: state = transition( michael@0: state, michael@0: Tokenizer.PROCESSING_INSTRUCTION_QUESTION_MARK, michael@0: reconsume, pos); michael@0: break processinginstructionloop; michael@0: // continue stateloop; michael@0: default: michael@0: continue; michael@0: } michael@0: } michael@0: case PROCESSING_INSTRUCTION_QUESTION_MARK: michael@0: if (++pos == endPos) { michael@0: break stateloop; michael@0: } michael@0: c = checkChar(buf, pos); michael@0: switch (c) { michael@0: case '>': michael@0: state = transition(state, Tokenizer.DATA, michael@0: reconsume, pos); michael@0: continue stateloop; michael@0: default: michael@0: state = transition(state, michael@0: Tokenizer.PROCESSING_INSTRUCTION, michael@0: reconsume, pos); michael@0: continue stateloop; michael@0: } michael@0: // END HOTSPOT WORKAROUND michael@0: } michael@0: } michael@0: flushChars(buf, pos); michael@0: /* michael@0: * if (prevCR && pos != endPos) { // why is this needed? pos--; col--; } michael@0: */ michael@0: // Save locals michael@0: stateSave = state; michael@0: returnStateSave = returnState; michael@0: return pos; michael@0: } michael@0: michael@0: // HOTSPOT WORKAROUND INSERTION POINT michael@0: michael@0: // [NOCPP[ michael@0: michael@0: protected int transition(int from, int to, boolean reconsume, int pos) throws SAXException { michael@0: return to; michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: private void initDoctypeFields() { michael@0: doctypeName = ""; michael@0: if (systemIdentifier != null) { michael@0: Portability.releaseString(systemIdentifier); michael@0: systemIdentifier = null; michael@0: } michael@0: if (publicIdentifier != null) { michael@0: Portability.releaseString(publicIdentifier); michael@0: publicIdentifier = null; michael@0: } michael@0: forceQuirks = false; michael@0: } michael@0: michael@0: @Inline private void adjustDoubleHyphenAndAppendToLongStrBufCarriageReturn() michael@0: throws SAXException { michael@0: silentCarriageReturn(); michael@0: adjustDoubleHyphenAndAppendToLongStrBufAndErr('\n'); michael@0: } michael@0: michael@0: @Inline private void adjustDoubleHyphenAndAppendToLongStrBufLineFeed() michael@0: throws SAXException { michael@0: silentLineFeed(); michael@0: adjustDoubleHyphenAndAppendToLongStrBufAndErr('\n'); michael@0: } michael@0: michael@0: @Inline private void appendLongStrBufLineFeed() { michael@0: silentLineFeed(); michael@0: appendLongStrBuf('\n'); michael@0: } michael@0: michael@0: @Inline private void appendLongStrBufCarriageReturn() { michael@0: silentCarriageReturn(); michael@0: appendLongStrBuf('\n'); michael@0: } michael@0: michael@0: @Inline protected void silentCarriageReturn() { michael@0: ++line; michael@0: lastCR = true; michael@0: } michael@0: michael@0: @Inline protected void silentLineFeed() { michael@0: ++line; michael@0: } michael@0: michael@0: private void emitCarriageReturn(@NoLength char[] buf, int pos) michael@0: throws SAXException { michael@0: silentCarriageReturn(); michael@0: flushChars(buf, pos); michael@0: tokenHandler.characters(Tokenizer.LF, 0, 1); michael@0: cstart = Integer.MAX_VALUE; michael@0: } michael@0: michael@0: private void emitReplacementCharacter(@NoLength char[] buf, int pos) michael@0: throws SAXException { michael@0: flushChars(buf, pos); michael@0: tokenHandler.zeroOriginatingReplacementCharacter(); michael@0: cstart = pos + 1; michael@0: } michael@0: michael@0: private void emitPlaintextReplacementCharacter(@NoLength char[] buf, int pos) michael@0: throws SAXException { michael@0: flushChars(buf, pos); michael@0: tokenHandler.characters(REPLACEMENT_CHARACTER, 0, 1); michael@0: cstart = pos + 1; michael@0: } michael@0: michael@0: private void setAdditionalAndRememberAmpersandLocation(char add) { michael@0: additional = add; michael@0: // [NOCPP[ michael@0: ampersandLocation = new LocatorImpl(this); michael@0: // ]NOCPP] michael@0: } michael@0: michael@0: private void bogusDoctype() throws SAXException { michael@0: errBogusDoctype(); michael@0: forceQuirks = true; michael@0: } michael@0: michael@0: private void bogusDoctypeWithoutQuirks() throws SAXException { michael@0: errBogusDoctype(); michael@0: forceQuirks = false; michael@0: } michael@0: michael@0: private void emitOrAppendStrBuf(int returnState) throws SAXException { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: appendStrBufToLongStrBuf(); michael@0: } else { michael@0: emitStrBuf(); michael@0: } michael@0: } michael@0: michael@0: private void handleNcrValue(int returnState) throws SAXException { michael@0: /* michael@0: * If one or more characters match the range, then take them all and michael@0: * interpret the string of characters as a number (either hexadecimal or michael@0: * decimal as appropriate). michael@0: */ michael@0: if (value <= 0xFFFF) { michael@0: if (value >= 0x80 && value <= 0x9f) { michael@0: /* michael@0: * If that number is one of the numbers in the first column of michael@0: * the following table, then this is a parse error. michael@0: */ michael@0: errNcrInC1Range(); michael@0: /* michael@0: * Find the row with that number in the first column, and return michael@0: * a character token for the Unicode character given in the michael@0: * second column of that row. michael@0: */ michael@0: @NoLength char[] val = NamedCharacters.WINDOWS_1252[value - 0x80]; michael@0: emitOrAppendOne(val, returnState); michael@0: // [NOCPP[ michael@0: } else if (value == 0xC michael@0: && contentSpacePolicy != XmlViolationPolicy.ALLOW) { michael@0: if (contentSpacePolicy == XmlViolationPolicy.ALTER_INFOSET) { michael@0: emitOrAppendOne(Tokenizer.SPACE, returnState); michael@0: } else if (contentSpacePolicy == XmlViolationPolicy.FATAL) { michael@0: fatal("A character reference expanded to a form feed which is not legal XML 1.0 white space."); michael@0: } michael@0: // ]NOCPP] michael@0: } else if (value == 0x0) { michael@0: errNcrZero(); michael@0: emitOrAppendOne(Tokenizer.REPLACEMENT_CHARACTER, returnState); michael@0: } else if ((value & 0xF800) == 0xD800) { michael@0: errNcrSurrogate(); michael@0: emitOrAppendOne(Tokenizer.REPLACEMENT_CHARACTER, returnState); michael@0: } else { michael@0: /* michael@0: * Otherwise, return a character token for the Unicode character michael@0: * whose code point is that number. michael@0: */ michael@0: char ch = (char) value; michael@0: // [NOCPP[ michael@0: if (value == 0x0D) { michael@0: errNcrCr(); michael@0: } else if ((value <= 0x0008) || (value == 0x000B) michael@0: || (value >= 0x000E && value <= 0x001F)) { michael@0: ch = errNcrControlChar(ch); michael@0: } else if (value >= 0xFDD0 && value <= 0xFDEF) { michael@0: errNcrUnassigned(); michael@0: } else if ((value & 0xFFFE) == 0xFFFE) { michael@0: ch = errNcrNonCharacter(ch); michael@0: } else if (value >= 0x007F && value <= 0x009F) { michael@0: errNcrControlChar(); michael@0: } else { michael@0: maybeWarnPrivateUse(ch); michael@0: } michael@0: // ]NOCPP] michael@0: bmpChar[0] = ch; michael@0: emitOrAppendOne(bmpChar, returnState); michael@0: } michael@0: } else if (value <= 0x10FFFF) { michael@0: // [NOCPP[ michael@0: maybeWarnPrivateUseAstral(); michael@0: if ((value & 0xFFFE) == 0xFFFE) { michael@0: errAstralNonCharacter(value); michael@0: } michael@0: // ]NOCPP] michael@0: astralChar[0] = (char) (Tokenizer.LEAD_OFFSET + (value >> 10)); michael@0: astralChar[1] = (char) (0xDC00 + (value & 0x3FF)); michael@0: emitOrAppendTwo(astralChar, returnState); michael@0: } else { michael@0: errNcrOutOfRange(); michael@0: emitOrAppendOne(Tokenizer.REPLACEMENT_CHARACTER, returnState); michael@0: } michael@0: } michael@0: michael@0: public void eof() throws SAXException { michael@0: int state = stateSave; michael@0: int returnState = returnStateSave; michael@0: michael@0: eofloop: for (;;) { michael@0: switch (state) { michael@0: case SCRIPT_DATA_LESS_THAN_SIGN: michael@0: case SCRIPT_DATA_ESCAPED_LESS_THAN_SIGN: michael@0: /* michael@0: * Otherwise, emit a U+003C LESS-THAN SIGN character token michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: /* michael@0: * and reconsume the current input character in the data michael@0: * state. michael@0: */ michael@0: break eofloop; michael@0: case TAG_OPEN: michael@0: /* michael@0: * The behavior of this state depends on the content model michael@0: * flag. michael@0: */ michael@0: /* michael@0: * Anything else Parse error. michael@0: */ michael@0: errEofAfterLt(); michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character token michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: /* michael@0: * and reconsume the current input character in the data michael@0: * state. michael@0: */ michael@0: break eofloop; michael@0: case RAWTEXT_RCDATA_LESS_THAN_SIGN: michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character token michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_GT, 0, 1); michael@0: /* michael@0: * and reconsume the current input character in the RCDATA michael@0: * state. michael@0: */ michael@0: break eofloop; michael@0: case NON_DATA_END_TAG_NAME: michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character token, a U+002F michael@0: * SOLIDUS character token, michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_SOLIDUS, 0, 2); michael@0: /* michael@0: * a character token for each of the characters in the michael@0: * temporary buffer (in the order they were added to the michael@0: * buffer), michael@0: */ michael@0: emitStrBuf(); michael@0: /* michael@0: * and reconsume the current input character in the RCDATA michael@0: * state. michael@0: */ michael@0: break eofloop; michael@0: case CLOSE_TAG_OPEN: michael@0: /* EOF Parse error. */ michael@0: errEofAfterLt(); michael@0: /* michael@0: * Emit a U+003C LESS-THAN SIGN character token and a U+002F michael@0: * SOLIDUS character token. michael@0: */ michael@0: tokenHandler.characters(Tokenizer.LT_SOLIDUS, 0, 2); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case TAG_NAME: michael@0: /* michael@0: * EOF Parse error. michael@0: */ michael@0: errEofInTagName(); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case BEFORE_ATTRIBUTE_NAME: michael@0: case AFTER_ATTRIBUTE_VALUE_QUOTED: michael@0: case SELF_CLOSING_START_TAG: michael@0: /* EOF Parse error. */ michael@0: errEofWithoutGt(); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case ATTRIBUTE_NAME: michael@0: /* michael@0: * EOF Parse error. michael@0: */ michael@0: errEofInAttributeName(); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case AFTER_ATTRIBUTE_NAME: michael@0: case BEFORE_ATTRIBUTE_VALUE: michael@0: /* EOF Parse error. */ michael@0: errEofWithoutGt(); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case ATTRIBUTE_VALUE_DOUBLE_QUOTED: michael@0: case ATTRIBUTE_VALUE_SINGLE_QUOTED: michael@0: case ATTRIBUTE_VALUE_UNQUOTED: michael@0: /* EOF Parse error. */ michael@0: errEofInAttributeValue(); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case BOGUS_COMMENT: michael@0: emitComment(0, 0); michael@0: break eofloop; michael@0: case BOGUS_COMMENT_HYPHEN: michael@0: // [NOCPP[ michael@0: maybeAppendSpaceToBogusComment(); michael@0: // ]NOCPP] michael@0: emitComment(0, 0); michael@0: break eofloop; michael@0: case MARKUP_DECLARATION_OPEN: michael@0: errBogusComment(); michael@0: clearLongStrBuf(); michael@0: emitComment(0, 0); michael@0: break eofloop; michael@0: case MARKUP_DECLARATION_HYPHEN: michael@0: errBogusComment(); michael@0: emitComment(0, 0); michael@0: break eofloop; michael@0: case MARKUP_DECLARATION_OCTYPE: michael@0: if (index < 6) { michael@0: errBogusComment(); michael@0: emitComment(0, 0); michael@0: } else { michael@0: /* EOF Parse error. */ michael@0: errEofInDoctype(); michael@0: /* michael@0: * Create a new DOCTYPE token. Set its force-quirks flag michael@0: * to on. michael@0: */ michael@0: doctypeName = ""; michael@0: if (systemIdentifier != null) { michael@0: Portability.releaseString(systemIdentifier); michael@0: systemIdentifier = null; michael@0: } michael@0: if (publicIdentifier != null) { michael@0: Portability.releaseString(publicIdentifier); michael@0: publicIdentifier = null; michael@0: } michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit the token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: } michael@0: break eofloop; michael@0: case COMMENT_START: michael@0: case COMMENT: michael@0: /* michael@0: * EOF Parse error. michael@0: */ michael@0: errEofInComment(); michael@0: /* Emit the comment token. */ michael@0: emitComment(0, 0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case COMMENT_END: michael@0: errEofInComment(); michael@0: /* Emit the comment token. */ michael@0: emitComment(2, 0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case COMMENT_END_DASH: michael@0: case COMMENT_START_DASH: michael@0: errEofInComment(); michael@0: /* Emit the comment token. */ michael@0: emitComment(1, 0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case COMMENT_END_BANG: michael@0: errEofInComment(); michael@0: /* Emit the comment token. */ michael@0: emitComment(3, 0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case DOCTYPE: michael@0: case BEFORE_DOCTYPE_NAME: michael@0: errEofInDoctype(); michael@0: /* michael@0: * Create a new DOCTYPE token. Set its force-quirks flag to michael@0: * on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit the token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case DOCTYPE_NAME: michael@0: errEofInDoctype(); michael@0: strBufToDoctypeName(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case DOCTYPE_UBLIC: michael@0: case DOCTYPE_YSTEM: michael@0: case AFTER_DOCTYPE_NAME: michael@0: case AFTER_DOCTYPE_PUBLIC_KEYWORD: michael@0: case AFTER_DOCTYPE_SYSTEM_KEYWORD: michael@0: case BEFORE_DOCTYPE_PUBLIC_IDENTIFIER: michael@0: errEofInDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case DOCTYPE_PUBLIC_IDENTIFIER_DOUBLE_QUOTED: michael@0: case DOCTYPE_PUBLIC_IDENTIFIER_SINGLE_QUOTED: michael@0: /* EOF Parse error. */ michael@0: errEofInPublicId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: publicIdentifier = longStrBufToString(); michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case AFTER_DOCTYPE_PUBLIC_IDENTIFIER: michael@0: case BEFORE_DOCTYPE_SYSTEM_IDENTIFIER: michael@0: case BETWEEN_DOCTYPE_PUBLIC_AND_SYSTEM_IDENTIFIERS: michael@0: errEofInDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case DOCTYPE_SYSTEM_IDENTIFIER_DOUBLE_QUOTED: michael@0: case DOCTYPE_SYSTEM_IDENTIFIER_SINGLE_QUOTED: michael@0: /* EOF Parse error. */ michael@0: errEofInSystemId(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: systemIdentifier = longStrBufToString(); michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case AFTER_DOCTYPE_SYSTEM_IDENTIFIER: michael@0: errEofInDoctype(); michael@0: /* michael@0: * Set the DOCTYPE token's force-quirks flag to on. michael@0: */ michael@0: forceQuirks = true; michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case BOGUS_DOCTYPE: michael@0: /* michael@0: * Emit that DOCTYPE token. michael@0: */ michael@0: emitDoctypeToken(0); michael@0: /* michael@0: * Reconsume the EOF character in the data state. michael@0: */ michael@0: break eofloop; michael@0: case CONSUME_CHARACTER_REFERENCE: michael@0: /* michael@0: * Unlike the definition is the spec, this state does not michael@0: * return a value and never requires the caller to michael@0: * backtrack. This state takes care of emitting characters michael@0: * or appending to the current attribute value. It also michael@0: * takes care of that in the case when consuming the entity michael@0: * fails. michael@0: */ michael@0: /* michael@0: * This section defines how to consume an entity. This michael@0: * definition is used when parsing entities in text and in michael@0: * attributes. michael@0: * michael@0: * The behavior depends on the identity of the next michael@0: * character (the one immediately after the U+0026 AMPERSAND michael@0: * character): michael@0: */ michael@0: michael@0: emitOrAppendStrBuf(returnState); michael@0: state = returnState; michael@0: continue; michael@0: case CHARACTER_REFERENCE_HILO_LOOKUP: michael@0: errNoNamedCharacterMatch(); michael@0: emitOrAppendStrBuf(returnState); michael@0: state = returnState; michael@0: continue; michael@0: case CHARACTER_REFERENCE_TAIL: michael@0: outer: for (;;) { michael@0: char c = '\u0000'; michael@0: entCol++; michael@0: /* michael@0: * Consume the maximum number of characters possible, michael@0: * with the consumed characters matching one of the michael@0: * identifiers in the first column of the named michael@0: * character references table (in a case-sensitive michael@0: * manner). michael@0: */ michael@0: hiloop: for (;;) { michael@0: if (hi == -1) { michael@0: break hiloop; michael@0: } michael@0: if (entCol == NamedCharacters.NAMES[hi].length()) { michael@0: break hiloop; michael@0: } michael@0: if (entCol > NamedCharacters.NAMES[hi].length()) { michael@0: break outer; michael@0: } else if (c < NamedCharacters.NAMES[hi].charAt(entCol)) { michael@0: hi--; michael@0: } else { michael@0: break hiloop; michael@0: } michael@0: } michael@0: michael@0: loloop: for (;;) { michael@0: if (hi < lo) { michael@0: break outer; michael@0: } michael@0: if (entCol == NamedCharacters.NAMES[lo].length()) { michael@0: candidate = lo; michael@0: strBufMark = strBufLen; michael@0: lo++; michael@0: } else if (entCol > NamedCharacters.NAMES[lo].length()) { michael@0: break outer; michael@0: } else if (c > NamedCharacters.NAMES[lo].charAt(entCol)) { michael@0: lo++; michael@0: } else { michael@0: break loloop; michael@0: } michael@0: } michael@0: if (hi < lo) { michael@0: break outer; michael@0: } michael@0: continue; michael@0: } michael@0: michael@0: if (candidate == -1) { michael@0: /* michael@0: * If no match can be made, then this is a parse error. michael@0: */ michael@0: errNoNamedCharacterMatch(); michael@0: emitOrAppendStrBuf(returnState); michael@0: state = returnState; michael@0: continue eofloop; michael@0: } else { michael@0: @Const @CharacterName String candidateName = NamedCharacters.NAMES[candidate]; michael@0: if (candidateName.length() == 0 michael@0: || candidateName.charAt(candidateName.length() - 1) != ';') { michael@0: /* michael@0: * If the last character matched is not a U+003B michael@0: * SEMICOLON (;), there is a parse error. michael@0: */ michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: /* michael@0: * If the entity is being consumed as part of an michael@0: * attribute, and the last character matched is michael@0: * not a U+003B SEMICOLON (;), michael@0: */ michael@0: char ch; michael@0: if (strBufMark == strBufLen) { michael@0: ch = '\u0000'; michael@0: } else { michael@0: ch = strBuf[strBufMark]; michael@0: } michael@0: if ((ch >= '0' && ch <= '9') michael@0: || (ch >= 'A' && ch <= 'Z') michael@0: || (ch >= 'a' && ch <= 'z')) { michael@0: /* michael@0: * and the next character is in the range michael@0: * U+0030 DIGIT ZERO to U+0039 DIGIT NINE, michael@0: * U+0041 LATIN CAPITAL LETTER A to U+005A michael@0: * LATIN CAPITAL LETTER Z, or U+0061 LATIN michael@0: * SMALL LETTER A to U+007A LATIN SMALL michael@0: * LETTER Z, then, for historical reasons, michael@0: * all the characters that were matched michael@0: * after the U+0026 AMPERSAND (&) must be michael@0: * unconsumed, and nothing is returned. michael@0: */ michael@0: errNoNamedCharacterMatch(); michael@0: appendStrBufToLongStrBuf(); michael@0: state = returnState; michael@0: continue eofloop; michael@0: } michael@0: } michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: errUnescapedAmpersandInterpretedAsCharacterReference(); michael@0: } else { michael@0: errNotSemicolonTerminated(); michael@0: } michael@0: } michael@0: michael@0: /* michael@0: * Otherwise, return a character token for the character michael@0: * corresponding to the entity name (as given by the michael@0: * second column of the named character references michael@0: * table). michael@0: */ michael@0: @Const @NoLength char[] val = NamedCharacters.VALUES[candidate]; michael@0: if ( michael@0: // [NOCPP[ michael@0: val.length == 1 michael@0: // ]NOCPP] michael@0: // CPPONLY: val[1] == 0 michael@0: ) { michael@0: emitOrAppendOne(val, returnState); michael@0: } else { michael@0: emitOrAppendTwo(val, returnState); michael@0: } michael@0: // this is so complicated! michael@0: if (strBufMark < strBufLen) { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: for (int i = strBufMark; i < strBufLen; i++) { michael@0: appendLongStrBuf(strBuf[i]); michael@0: } michael@0: } else { michael@0: tokenHandler.characters(strBuf, strBufMark, michael@0: strBufLen - strBufMark); michael@0: } michael@0: } michael@0: state = returnState; michael@0: continue eofloop; michael@0: /* michael@0: * If the markup contains I'm ¬it; I tell you, the michael@0: * entity is parsed as "not", as in, I'm ¬it; I tell michael@0: * you. But if the markup was I'm ∉ I tell you, michael@0: * the entity would be parsed as "notin;", resulting in michael@0: * I'm ∉ I tell you. michael@0: */ michael@0: } michael@0: case CONSUME_NCR: michael@0: case DECIMAL_NRC_LOOP: michael@0: case HEX_NCR_LOOP: michael@0: /* michael@0: * If no characters match the range, then don't consume any michael@0: * characters (and unconsume the U+0023 NUMBER SIGN michael@0: * character and, if appropriate, the X character). This is michael@0: * a parse error; nothing is returned. michael@0: * michael@0: * Otherwise, if the next character is a U+003B SEMICOLON, michael@0: * consume that too. If it isn't, there is a parse error. michael@0: */ michael@0: if (!seenDigits) { michael@0: errNoDigitsInNCR(); michael@0: emitOrAppendStrBuf(returnState); michael@0: state = returnState; michael@0: continue; michael@0: } else { michael@0: errCharRefLacksSemicolon(); michael@0: } michael@0: // WARNING previous state sets reconsume michael@0: handleNcrValue(returnState); michael@0: state = returnState; michael@0: continue; michael@0: case CDATA_RSQB: michael@0: tokenHandler.characters(Tokenizer.RSQB_RSQB, 0, 1); michael@0: break eofloop; michael@0: case CDATA_RSQB_RSQB: michael@0: tokenHandler.characters(Tokenizer.RSQB_RSQB, 0, 2); michael@0: break eofloop; michael@0: case DATA: michael@0: default: michael@0: break eofloop; michael@0: } michael@0: } michael@0: // case DATA: michael@0: /* michael@0: * EOF Emit an end-of-file token. michael@0: */ michael@0: tokenHandler.eof(); michael@0: return; michael@0: } michael@0: michael@0: private void emitDoctypeToken(int pos) throws SAXException { michael@0: cstart = pos + 1; michael@0: tokenHandler.doctype(doctypeName, publicIdentifier, systemIdentifier, michael@0: forceQuirks); michael@0: // It is OK and sufficient to release these here, since michael@0: // there's no way out of the doctype states than through paths michael@0: // that call this method. michael@0: doctypeName = null; michael@0: Portability.releaseString(publicIdentifier); michael@0: publicIdentifier = null; michael@0: Portability.releaseString(systemIdentifier); michael@0: systemIdentifier = null; michael@0: } michael@0: michael@0: @Inline protected char checkChar(@NoLength char[] buf, int pos) michael@0: throws SAXException { michael@0: return buf[pos]; michael@0: } michael@0: michael@0: public boolean internalEncodingDeclaration(String internalCharset) michael@0: throws SAXException { michael@0: if (encodingDeclarationHandler != null) { michael@0: return encodingDeclarationHandler.internalEncodingDeclaration(internalCharset); michael@0: } michael@0: return false; michael@0: } michael@0: michael@0: /** michael@0: * @param val michael@0: * @throws SAXException michael@0: */ michael@0: private void emitOrAppendTwo(@Const @NoLength char[] val, int returnState) michael@0: throws SAXException { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: appendLongStrBuf(val[0]); michael@0: appendLongStrBuf(val[1]); michael@0: } else { michael@0: tokenHandler.characters(val, 0, 2); michael@0: } michael@0: } michael@0: michael@0: private void emitOrAppendOne(@Const @NoLength char[] val, int returnState) michael@0: throws SAXException { michael@0: if ((returnState & DATA_AND_RCDATA_MASK) != 0) { michael@0: appendLongStrBuf(val[0]); michael@0: } else { michael@0: tokenHandler.characters(val, 0, 1); michael@0: } michael@0: } michael@0: michael@0: public void end() throws SAXException { michael@0: strBuf = null; michael@0: longStrBuf = null; michael@0: doctypeName = null; michael@0: if (systemIdentifier != null) { michael@0: Portability.releaseString(systemIdentifier); michael@0: systemIdentifier = null; michael@0: } michael@0: if (publicIdentifier != null) { michael@0: Portability.releaseString(publicIdentifier); michael@0: publicIdentifier = null; michael@0: } michael@0: if (tagName != null) { michael@0: tagName.release(); michael@0: tagName = null; michael@0: } michael@0: if (attributeName != null) { michael@0: attributeName.release(); michael@0: attributeName = null; michael@0: } michael@0: tokenHandler.endTokenization(); michael@0: if (attributes != null) { michael@0: // [NOCPP[ michael@0: attributes = null; michael@0: // ]NOCPP] michael@0: // CPPONLY: attributes.clear(mappingLangToXmlLang); michael@0: } michael@0: } michael@0: michael@0: public void requestSuspension() { michael@0: shouldSuspend = true; michael@0: } michael@0: michael@0: // [NOCPP[ michael@0: michael@0: public void becomeConfident() { michael@0: confident = true; michael@0: } michael@0: michael@0: /** michael@0: * Returns the nextCharOnNewLine. michael@0: * michael@0: * @return the nextCharOnNewLine michael@0: */ michael@0: public boolean isNextCharOnNewLine() { michael@0: return false; michael@0: } michael@0: michael@0: public boolean isPrevCR() { michael@0: return lastCR; michael@0: } michael@0: michael@0: /** michael@0: * Returns the line. michael@0: * michael@0: * @return the line michael@0: */ michael@0: public int getLine() { michael@0: return -1; michael@0: } michael@0: michael@0: /** michael@0: * Returns the col. michael@0: * michael@0: * @return the col michael@0: */ michael@0: public int getCol() { michael@0: return -1; michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: public boolean isInDataState() { michael@0: return (stateSave == DATA); michael@0: } michael@0: michael@0: public void resetToDataState() { michael@0: strBufLen = 0; michael@0: longStrBufLen = 0; michael@0: stateSave = Tokenizer.DATA; michael@0: // line = 1; XXX line numbers michael@0: lastCR = false; michael@0: index = 0; michael@0: forceQuirks = false; michael@0: additional = '\u0000'; michael@0: entCol = -1; michael@0: firstCharKey = -1; michael@0: lo = 0; michael@0: hi = 0; // will always be overwritten before use anyway michael@0: candidate = -1; michael@0: strBufMark = 0; michael@0: prevValue = -1; michael@0: value = 0; michael@0: seenDigits = false; michael@0: endTag = false; michael@0: shouldSuspend = false; michael@0: initDoctypeFields(); michael@0: if (tagName != null) { michael@0: tagName.release(); michael@0: tagName = null; michael@0: } michael@0: if (attributeName != null) { michael@0: attributeName.release(); michael@0: attributeName = null; michael@0: } michael@0: if (newAttributesEachTime) { michael@0: if (attributes != null) { michael@0: Portability.delete(attributes); michael@0: attributes = null; michael@0: } michael@0: } michael@0: } michael@0: michael@0: public void loadState(Tokenizer other) throws SAXException { michael@0: strBufLen = other.strBufLen; michael@0: if (strBufLen > strBuf.length) { michael@0: strBuf = new char[strBufLen]; michael@0: } michael@0: System.arraycopy(other.strBuf, 0, strBuf, 0, strBufLen); michael@0: michael@0: longStrBufLen = other.longStrBufLen; michael@0: if (longStrBufLen > longStrBuf.length) { michael@0: longStrBuf = new char[longStrBufLen]; michael@0: } michael@0: System.arraycopy(other.longStrBuf, 0, longStrBuf, 0, longStrBufLen); michael@0: michael@0: stateSave = other.stateSave; michael@0: returnStateSave = other.returnStateSave; michael@0: endTagExpectation = other.endTagExpectation; michael@0: endTagExpectationAsArray = other.endTagExpectationAsArray; michael@0: // line = 1; XXX line numbers michael@0: lastCR = other.lastCR; michael@0: index = other.index; michael@0: forceQuirks = other.forceQuirks; michael@0: additional = other.additional; michael@0: entCol = other.entCol; michael@0: firstCharKey = other.firstCharKey; michael@0: lo = other.lo; michael@0: hi = other.hi; michael@0: candidate = other.candidate; michael@0: strBufMark = other.strBufMark; michael@0: prevValue = other.prevValue; michael@0: value = other.value; michael@0: seenDigits = other.seenDigits; michael@0: endTag = other.endTag; michael@0: shouldSuspend = false; michael@0: michael@0: if (other.doctypeName == null) { michael@0: doctypeName = null; michael@0: } else { michael@0: doctypeName = Portability.newLocalFromLocal(other.doctypeName, michael@0: interner); michael@0: } michael@0: michael@0: Portability.releaseString(systemIdentifier); michael@0: if (other.systemIdentifier == null) { michael@0: systemIdentifier = null; michael@0: } else { michael@0: systemIdentifier = Portability.newStringFromString(other.systemIdentifier); michael@0: } michael@0: michael@0: Portability.releaseString(publicIdentifier); michael@0: if (other.publicIdentifier == null) { michael@0: publicIdentifier = null; michael@0: } else { michael@0: publicIdentifier = Portability.newStringFromString(other.publicIdentifier); michael@0: } michael@0: michael@0: if (tagName != null) { michael@0: tagName.release(); michael@0: } michael@0: if (other.tagName == null) { michael@0: tagName = null; michael@0: } else { michael@0: tagName = other.tagName.cloneElementName(interner); michael@0: } michael@0: michael@0: if (attributeName != null) { michael@0: attributeName.release(); michael@0: } michael@0: if (other.attributeName == null) { michael@0: attributeName = null; michael@0: } else { michael@0: attributeName = other.attributeName.cloneAttributeName(interner); michael@0: } michael@0: michael@0: Portability.delete(attributes); michael@0: if (other.attributes == null) { michael@0: attributes = null; michael@0: } else { michael@0: attributes = other.attributes.cloneAttributes(interner); michael@0: } michael@0: } michael@0: michael@0: public void initializeWithoutStarting() throws SAXException { michael@0: confident = false; michael@0: strBuf = new char[64]; michael@0: longStrBuf = new char[1024]; michael@0: line = 1; michael@0: // [NOCPP[ michael@0: html4 = false; michael@0: metaBoundaryPassed = false; michael@0: wantsComments = tokenHandler.wantsComments(); michael@0: if (!newAttributesEachTime) { michael@0: attributes = new HtmlAttributes(mappingLangToXmlLang); michael@0: } michael@0: // ]NOCPP] michael@0: resetToDataState(); michael@0: } michael@0: michael@0: protected void errGarbageAfterLtSlash() throws SAXException { michael@0: } michael@0: michael@0: protected void errLtSlashGt() throws SAXException { michael@0: } michael@0: michael@0: protected void errWarnLtSlashInRcdata() throws SAXException { michael@0: } michael@0: michael@0: protected void errHtml4LtSlashInRcdata(char folded) throws SAXException { michael@0: } michael@0: michael@0: protected void errCharRefLacksSemicolon() throws SAXException { michael@0: } michael@0: michael@0: protected void errNoDigitsInNCR() throws SAXException { michael@0: } michael@0: michael@0: protected void errGtInSystemId() throws SAXException { michael@0: } michael@0: michael@0: protected void errGtInPublicId() throws SAXException { michael@0: } michael@0: michael@0: protected void errNamelessDoctype() throws SAXException { michael@0: } michael@0: michael@0: protected void errConsecutiveHyphens() throws SAXException { michael@0: } michael@0: michael@0: protected void errPrematureEndOfComment() throws SAXException { michael@0: } michael@0: michael@0: protected void errBogusComment() throws SAXException { michael@0: } michael@0: michael@0: protected void errUnquotedAttributeValOrNull(char c) throws SAXException { michael@0: } michael@0: michael@0: protected void errSlashNotFollowedByGt() throws SAXException { michael@0: } michael@0: michael@0: protected void errHtml4XmlVoidSyntax() throws SAXException { michael@0: } michael@0: michael@0: protected void errNoSpaceBetweenAttributes() throws SAXException { michael@0: } michael@0: michael@0: protected void errHtml4NonNameInUnquotedAttribute(char c) michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void errLtOrEqualsOrGraveInUnquotedAttributeOrNull(char c) michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void errAttributeValueMissing() throws SAXException { michael@0: } michael@0: michael@0: protected void errBadCharBeforeAttributeNameOrNull(char c) michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void errEqualsSignBeforeAttributeName() throws SAXException { michael@0: } michael@0: michael@0: protected void errBadCharAfterLt(char c) throws SAXException { michael@0: } michael@0: michael@0: protected void errLtGt() throws SAXException { michael@0: } michael@0: michael@0: protected void errProcessingInstruction() throws SAXException { michael@0: } michael@0: michael@0: protected void errUnescapedAmpersandInterpretedAsCharacterReference() michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void errNotSemicolonTerminated() throws SAXException { michael@0: } michael@0: michael@0: protected void errNoNamedCharacterMatch() throws SAXException { michael@0: } michael@0: michael@0: protected void errQuoteBeforeAttributeName(char c) throws SAXException { michael@0: } michael@0: michael@0: protected void errQuoteOrLtInAttributeNameOrNull(char c) michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void errExpectedPublicId() throws SAXException { michael@0: } michael@0: michael@0: protected void errBogusDoctype() throws SAXException { michael@0: } michael@0: michael@0: protected void maybeWarnPrivateUseAstral() throws SAXException { michael@0: } michael@0: michael@0: protected void maybeWarnPrivateUse(char ch) throws SAXException { michael@0: } michael@0: michael@0: protected void maybeErrAttributesOnEndTag(HtmlAttributes attrs) michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void maybeErrSlashInEndTag(boolean selfClosing) michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected char errNcrNonCharacter(char ch) throws SAXException { michael@0: return ch; michael@0: } michael@0: michael@0: protected void errAstralNonCharacter(int ch) throws SAXException { michael@0: } michael@0: michael@0: protected void errNcrSurrogate() throws SAXException { michael@0: } michael@0: michael@0: protected char errNcrControlChar(char ch) throws SAXException { michael@0: return ch; michael@0: } michael@0: michael@0: protected void errNcrCr() throws SAXException { michael@0: } michael@0: michael@0: protected void errNcrInC1Range() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInPublicId() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInComment() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInDoctype() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInAttributeValue() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInAttributeName() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofWithoutGt() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInTagName() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInEndTag() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofAfterLt() throws SAXException { michael@0: } michael@0: michael@0: protected void errNcrOutOfRange() throws SAXException { michael@0: } michael@0: michael@0: protected void errNcrUnassigned() throws SAXException { michael@0: } michael@0: michael@0: protected void errDuplicateAttribute() throws SAXException { michael@0: } michael@0: michael@0: protected void errEofInSystemId() throws SAXException { michael@0: } michael@0: michael@0: protected void errExpectedSystemId() throws SAXException { michael@0: } michael@0: michael@0: protected void errMissingSpaceBeforeDoctypeName() throws SAXException { michael@0: } michael@0: michael@0: protected void errHyphenHyphenBang() throws SAXException { michael@0: } michael@0: michael@0: protected void errNcrControlChar() throws SAXException { michael@0: } michael@0: michael@0: protected void errNcrZero() throws SAXException { michael@0: } michael@0: michael@0: protected void errNoSpaceBetweenDoctypeSystemKeywordAndQuote() michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void errNoSpaceBetweenPublicAndSystemIds() throws SAXException { michael@0: } michael@0: michael@0: protected void errNoSpaceBetweenDoctypePublicKeywordAndQuote() michael@0: throws SAXException { michael@0: } michael@0: michael@0: protected void noteAttributeWithoutValue() throws SAXException { michael@0: } michael@0: michael@0: protected void noteUnquotedAttributeValue() throws SAXException { michael@0: } michael@0: michael@0: /** michael@0: * Sets the encodingDeclarationHandler. michael@0: * michael@0: * @param encodingDeclarationHandler michael@0: * the encodingDeclarationHandler to set michael@0: */ michael@0: public void setEncodingDeclarationHandler( michael@0: EncodingDeclarationHandler encodingDeclarationHandler) { michael@0: this.encodingDeclarationHandler = encodingDeclarationHandler; michael@0: } michael@0: michael@0: void destructor() { michael@0: // The translator will write refcount tracing stuff here michael@0: Portability.delete(attributes); michael@0: attributes = null; michael@0: } michael@0: michael@0: // [NOCPP[ michael@0: michael@0: /** michael@0: * Sets an offset to be added to the position reported to michael@0: * TransitionHandler. michael@0: * michael@0: * @param offset the offset michael@0: */ michael@0: public void setTransitionBaseOffset(int offset) { michael@0: michael@0: } michael@0: michael@0: // ]NOCPP] michael@0: michael@0: }