1 | /** |
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2 | **************************************************************************** |
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3 | * <P> XML.c - implementation file for basic XML parser written in ANSI C++ |
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4 | * for portability. It works by using recursion and a node tree for breaking |
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5 | * down the elements of an XML document. </P> |
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6 | * |
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7 | * @version V2.33 |
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8 | * @author Frank Vanden Berghen |
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9 | * |
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10 | * BSD license: |
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11 | * Copyright (c) 2002, Frank Vanden Berghen |
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12 | * All rights reserved. |
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13 | * Redistribution and use in source and binary forms, with or without |
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14 | * modification, are permitted provided that the following conditions are met: |
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15 | * |
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16 | * * Redistributions of source code must retain the above copyright |
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17 | * notice, this list of conditions and the following disclaimer. |
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18 | * * Redistributions in binary form must reproduce the above copyright |
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19 | * notice, this list of conditions and the following disclaimer in the |
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20 | * documentation and/or other materials provided with the distribution. |
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21 | * * Neither the name of the Frank Vanden Berghen nor the |
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22 | * names of its contributors may be used to endorse or promote products |
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23 | * derived from this software without specific prior written permission. |
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24 | * |
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25 | * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND ANY |
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26 | * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED |
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27 | * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE |
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28 | * DISCLAIMED. IN NO EVENT SHALL THE REGENTS AND CONTRIBUTORS BE LIABLE FOR ANY |
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29 | * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES |
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30 | * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; |
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31 | * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND |
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32 | * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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33 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS |
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34 | * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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35 | * |
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36 | **************************************************************************** |
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37 | */ |
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38 | #ifndef __INCLUDE_XML_NODE__ |
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39 | #define __INCLUDE_XML_NODE__ |
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40 | |
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41 | #include <stdlib.h> |
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42 | |
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43 | #ifdef _UNICODE |
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44 | // If you comment the next "define" line then the library will never "switch to" _UNICODE (wchar_t*) mode (16/32 bits per characters). |
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45 | // This is useful when you get error messages like: |
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46 | // 'XMLNode::openFileHelper' : cannot convert parameter 2 from 'const char [5]' to 'const wchar_t *' |
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47 | // The _XMLWIDECHAR preprocessor variable force the XMLParser library into either utf16/32-mode (the proprocessor variable |
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48 | // must be defined) or utf8-mode(the pre-processor variable must be undefined). |
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49 | //#define _XMLWIDECHAR |
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50 | #endif |
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51 | |
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52 | #if defined(WIN32) || defined(UNDER_CE) |
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53 | // comment the next line if you are under windows and the compiler is not Microsoft Visual Studio (6.0 or .NET) |
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54 | #define _XMLWINDOWS |
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55 | #endif |
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56 | |
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57 | #ifdef XMLDLLENTRY |
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58 | #undef XMLDLLENTRY |
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59 | #endif |
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60 | #ifdef _USE_XMLPARSER_DLL |
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61 | #ifdef _DLL_EXPORTS_ |
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62 | #define XMLDLLENTRY __declspec(dllexport) |
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63 | #else |
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64 | #define XMLDLLENTRY __declspec(dllimport) |
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65 | #endif |
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66 | #else |
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67 | #define XMLDLLENTRY |
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68 | #endif |
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69 | |
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70 | // uncomment the next line if you want no support for wchar_t* (no need for the <wchar.h> or <tchar.h> libraries anymore to compile) |
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71 | //#define XML_NO_WIDE_CHAR |
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72 | |
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73 | #ifdef XML_NO_WIDE_CHAR |
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74 | #undef _XMLWINDOWS |
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75 | #undef _XMLWIDECHAR |
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76 | #endif |
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77 | |
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78 | #ifdef _XMLWINDOWS |
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79 | #include <tchar.h> |
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80 | #else |
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81 | #define XMLDLLENTRY |
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82 | #ifndef XML_NO_WIDE_CHAR |
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83 | #include <wchar.h> // to have 'wcsrtombs' for ANSI version |
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84 | // to have 'mbsrtowcs' for WIDECHAR version |
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85 | #endif |
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86 | #endif |
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87 | |
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88 | // Some common types for char set portable code |
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89 | #ifdef _XMLWIDECHAR |
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90 | #ifndef _X |
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91 | #define _X(c) L ## c |
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92 | #endif |
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93 | #define XMLCSTR const wchar_t * |
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94 | #define XMLSTR wchar_t * |
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95 | #define XMLCHAR wchar_t |
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96 | #else |
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97 | #ifndef _X |
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98 | #define _X(c) c |
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99 | #endif |
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100 | #define XMLCSTR const char * |
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101 | #define XMLSTR char * |
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102 | #define XMLCHAR char |
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103 | #endif |
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104 | #ifndef FALSE |
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105 | #define FALSE 0 |
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106 | #endif /* FALSE */ |
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107 | #ifndef TRUE |
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108 | #define TRUE 1 |
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109 | #endif /* TRUE */ |
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110 | |
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111 | |
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112 | // Enumeration for XML parse errors. |
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113 | typedef enum XMLError |
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114 | { |
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115 | eXMLErrorNone = 0, |
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116 | eXMLErrorMissingEndTag, |
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117 | eXMLErrorNoXMLTagFound, |
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118 | eXMLErrorEmpty, |
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119 | eXMLErrorMissingTagName, |
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120 | eXMLErrorMissingEndTagName, |
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121 | eXMLErrorUnmatchedEndTag, |
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122 | eXMLErrorUnmatchedEndClearTag, |
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123 | eXMLErrorUnexpectedToken, |
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124 | eXMLErrorNoElements, |
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125 | eXMLErrorFileNotFound, |
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126 | eXMLErrorFirstTagNotFound, |
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127 | eXMLErrorUnknownCharacterEntity, |
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128 | eXMLErrorCharConversionError, |
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129 | eXMLErrorCannotOpenWriteFile, |
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130 | eXMLErrorCannotWriteFile, |
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131 | |
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132 | eXMLErrorBase64DataSizeIsNotMultipleOf4, |
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133 | eXMLErrorBase64DecodeIllegalCharacter, |
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134 | eXMLErrorBase64DecodeTruncatedData, |
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135 | eXMLErrorBase64DecodeBufferTooSmall |
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136 | } XMLError; |
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137 | |
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138 | |
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139 | // Enumeration used to manage type of data. Use in conjunction with structure XMLNodeContents |
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140 | typedef enum XMLElementType |
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141 | { |
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142 | eNodeChild=0, |
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143 | eNodeAttribute=1, |
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144 | eNodeText=2, |
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145 | eNodeClear=3, |
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146 | eNodeNULL=4 |
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147 | } XMLElementType; |
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148 | |
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149 | // Structure used to obtain error details if the parse fails. |
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150 | typedef struct XMLResults |
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151 | { |
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152 | enum XMLError error; |
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153 | int nLine,nColumn; |
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154 | } XMLResults; |
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155 | |
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156 | // Structure for XML clear (unformatted) node (usually comments) |
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157 | typedef struct XMLClear { |
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158 | XMLCSTR lpszValue; XMLCSTR lpszOpenTag; XMLCSTR lpszCloseTag; |
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159 | } XMLClear; |
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160 | |
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161 | // Structure for XML attribute. |
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162 | typedef struct XMLAttribute { |
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163 | XMLCSTR lpszName; XMLCSTR lpszValue; |
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164 | } XMLAttribute; |
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165 | |
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166 | // XMLElementPosition are not interchangeable with simple indexes |
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167 | typedef int XMLElementPosition; |
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168 | |
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169 | struct XMLNodeContents; |
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170 | |
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171 | typedef struct XMLDLLENTRY XMLNode |
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172 | { |
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173 | private: |
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174 | |
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175 | struct XMLNodeDataTag; |
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176 | |
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177 | // protected constructors: use one of these four methods to get your first instance of XMLNode: |
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178 | // - parseString |
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179 | // - parseFile |
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180 | // - openFileHelper |
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181 | // - createXMLTopNode |
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182 | XMLNode(struct XMLNodeDataTag *pParent, XMLSTR lpszName, char isDeclaration); |
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183 | XMLNode(struct XMLNodeDataTag *p); |
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184 | |
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185 | public: |
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186 | |
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187 | // You can create your first instance of XMLNode with these 4 functions: |
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188 | // (see complete explanation of parameters below) |
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189 | |
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190 | static XMLNode createXMLTopNode(XMLCSTR lpszName, char isDeclaration=FALSE); |
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191 | static XMLNode parseString (XMLCSTR lpXMLString, XMLCSTR tag=NULL, XMLResults *pResults=NULL); |
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192 | static XMLNode parseFile (XMLCSTR filename, XMLCSTR tag=NULL, XMLResults *pResults=NULL); |
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193 | static XMLNode openFileHelper(XMLCSTR filename, XMLCSTR tag=NULL ); |
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194 | |
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195 | // The tag parameter should be the name of the first tag inside the XML file. |
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196 | // If the tag parameter is omitted, the 3 functions return a node that represents |
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197 | // the head of the xml document including the declaration term (<? ... ?>). |
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198 | |
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199 | // The "openFileHelper" reports to the screen all the warnings & errors that occurred during |
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200 | // parsing of the XML file. Since each application has its own way to report and deal with errors, |
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201 | // you should rather use the "parseFile" function to parse XML files and program yourself thereafter |
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202 | // an "error reporting" tailored for your needs (instead of using the very crude "error reporting" |
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203 | // mechanism included inside the "openFileHelper" function). |
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204 | |
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205 | // If the XML document is corrupted: |
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206 | // * The "openFileHelper" method will: |
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207 | // - display an error message on the console (or inside a messageBox for windows). |
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208 | // - stop execution (exit). |
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209 | // I suggest that you write your own "openFileHelper" method tailored to your needs. |
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210 | // * The 2 other methods will initialize the "pResults" variable with some information that |
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211 | // can be used to trace the error. |
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212 | // * If you still want to parse the file, you can use the APPROXIMATE_PARSING option as |
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213 | // explained inside the note at the beginning of the "xmlParser.cpp" file. |
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214 | // You can have a user-friendly explanation of the parsing error with this function: |
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215 | static XMLCSTR getError(XMLError error); |
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216 | static XMLCSTR getVersion(); |
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217 | |
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218 | XMLCSTR getName() const; // name of the node |
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219 | XMLCSTR getText(int i=0) const; // return ith text field |
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220 | int nText() const; // nbr of text field |
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221 | XMLNode getParentNode() const; // return the parent node |
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222 | XMLNode getChildNode(int i=0) const; // return ith child node |
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223 | XMLNode getChildNode(XMLCSTR name, int i) const; // return ith child node with specific name |
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224 | // (return an empty node if failing) |
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225 | XMLNode getChildNode(XMLCSTR name, int *i=NULL) const; // return next child node with specific name |
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226 | // (return an empty node if failing) |
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227 | XMLNode getChildNodeWithAttribute(XMLCSTR tagName, // return child node with specific name/attribute |
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228 | XMLCSTR attributeName, // (return an empty node if failing) |
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229 | XMLCSTR attributeValue=NULL, // |
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230 | int *i=NULL) const; // |
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231 | int nChildNode(XMLCSTR name) const; // return the number of child node with specific name |
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232 | int nChildNode() const; // nbr of child node |
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233 | XMLAttribute getAttribute(int i=0) const; // return ith attribute |
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234 | XMLCSTR getAttributeName(int i=0) const; // return ith attribute name |
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235 | XMLCSTR getAttributeValue(int i=0) const; // return ith attribute value |
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236 | char isAttributeSet(XMLCSTR name) const; // test if an attribute with a specific name is given |
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237 | XMLCSTR getAttribute(XMLCSTR name, int i) const; // return ith attribute content with specific name |
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238 | // (return a NULL if failing) |
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239 | XMLCSTR getAttribute(XMLCSTR name, int *i=NULL) const; // return next attribute content with specific name |
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240 | // (return a NULL if failing) |
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241 | int nAttribute() const; // nbr of attribute |
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242 | XMLClear getClear(int i=0) const; // return ith clear field (comments) |
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243 | int nClear() const; // nbr of clear field |
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244 | XMLSTR createXMLString(int nFormat=1, int *pnSize=NULL) const; // create XML string starting from current XMLNode |
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245 | // if nFormat==0, no formatting is required |
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246 | // otherwise this returns an user friendly XML string from a |
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247 | // given element with appropriate white spaces and carriage returns. |
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248 | // if pnSize is given it returns the size in character of the string. |
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249 | XMLError writeToFile(XMLCSTR filename, const char *encoding=NULL, char nFormat=1) const; |
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250 | // Save the content of an xmlNode inside a file. |
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251 | // The nFormat parameter has the same meaning as in the |
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252 | // createXMLString function. If the global parameter |
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253 | // "characterEncoding==encoding_UTF8", then the "encoding" parameter is |
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254 | // ignored and always set to "utf-8". If the global parameter |
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255 | // "characterEncoding==encoding_ShiftJIS", then the "encoding" parameter |
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256 | // is ignored and always set to "SHIFT-JIS". If "_XMLWIDECHAR=1", then |
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257 | // the "encoding" parameter is ignored and always set to "utf-16". |
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258 | // If no "encoding" parameter is given the "ISO-8859-1" encoding is used. |
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259 | XMLNodeContents enumContents(XMLElementPosition i) const; // enumerate all the different contents (attribute,child,text, |
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260 | // clear) of the current XMLNode. The order is reflecting |
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261 | // the order of the original file/string. |
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262 | // NOTE: 0 <= i < nElement(); |
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263 | int nElement() const; // nbr of different contents for current node |
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264 | char isEmpty() const; // is this node Empty? |
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265 | char isDeclaration() const; // is this node a declaration <? .... ?> |
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266 | XMLNode deepCopy() const; // deep copy (duplicate/clone) a XMLNode |
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267 | static XMLNode emptyNode(); // return XMLNode::emptyXMLNode; |
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268 | |
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269 | // to allow shallow/fast copy: |
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270 | ~XMLNode(); |
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271 | XMLNode(const XMLNode &A); |
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272 | XMLNode& operator=( const XMLNode& A ); |
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273 | |
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274 | XMLNode(): d(NULL){}; |
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275 | static XMLNode emptyXMLNode; |
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276 | static XMLClear emptyXMLClear; |
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277 | static XMLAttribute emptyXMLAttribute; |
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278 | |
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279 | // The following functions allows you to create from scratch (or update) a XMLNode structure |
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280 | // Start by creating your top node with the "createXMLTopNode" function and then add new nodes with the "addChild" function. |
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281 | // The parameter 'pos' gives the position where the childNode, the text or the XMLClearTag will be inserted. |
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282 | // The default value (pos=-1) inserts at the end. The value (pos=0) insert at the beginning (Insertion at the beginning is slower than at the end). |
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283 | // REMARK: 0 <= pos < nChild()+nText()+nClear() |
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284 | XMLNode addChild(XMLCSTR lpszName, char isDeclaration=FALSE, XMLElementPosition pos=-1); |
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285 | XMLAttribute *addAttribute(XMLCSTR lpszName, XMLCSTR lpszValuev); |
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286 | XMLCSTR addText(XMLCSTR lpszValue, XMLElementPosition pos=-1); |
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287 | XMLClear *addClear(XMLCSTR lpszValue, XMLCSTR lpszOpen=NULL, XMLCSTR lpszClose=NULL, XMLElementPosition pos=-1); |
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288 | // default values: lpszOpen ="<![CDATA[" |
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289 | // lpszClose="]]>" |
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290 | XMLNode addChild(XMLNode nodeToAdd, XMLElementPosition pos=-1); // If the "nodeToAdd" has some parents, it will be detached |
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291 | // from it's parents before being attached to the current XMLNode |
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292 | // Some update functions: |
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293 | XMLCSTR updateName(XMLCSTR lpszName); // change node's name |
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294 | XMLAttribute *updateAttribute(XMLAttribute *newAttribute, XMLAttribute *oldAttribute); // if the attribute to update is missing, a new one will be added |
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295 | XMLAttribute *updateAttribute(XMLCSTR lpszNewValue, XMLCSTR lpszNewName=NULL,int i=0); // if the attribute to update is missing, a new one will be added |
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296 | XMLAttribute *updateAttribute(XMLCSTR lpszNewValue, XMLCSTR lpszNewName,XMLCSTR lpszOldName); // set lpszNewName=NULL if you don't want to change the name of the attribute |
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297 | // if the attribute to update is missing, a new one will be added |
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298 | XMLCSTR updateText(XMLCSTR lpszNewValue, int i=0); // if the text to update is missing, a new one will be added |
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299 | XMLCSTR updateText(XMLCSTR lpszNewValue, XMLCSTR lpszOldValue); // if the text to update is missing, a new one will be added |
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300 | XMLClear *updateClear(XMLCSTR lpszNewContent, int i=0); // if the clearTag to update is missing, a new one will be added |
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301 | XMLClear *updateClear(XMLClear *newP,XMLClear *oldP); // if the clearTag to update is missing, a new one will be added |
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302 | XMLClear *updateClear(XMLCSTR lpszNewValue, XMLCSTR lpszOldValue); // if the clearTag to update is missing, a new one will be added |
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303 | |
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304 | // Some deletion functions: |
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305 | void deleteNodeContent(); // delete the content of this XMLNode and the subtree. |
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306 | void deleteAttribute(XMLCSTR lpszName); |
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307 | void deleteAttribute(int i=0); |
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308 | void deleteAttribute(XMLAttribute *anAttribute); |
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309 | void deleteText(int i=0); |
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310 | void deleteText(XMLCSTR lpszValue); |
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311 | void deleteClear(int i=0); |
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312 | void deleteClear(XMLClear *p); |
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313 | void deleteClear(XMLCSTR lpszValue); |
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314 | |
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315 | // The strings given as parameters for the following add and update methods (all these methods have |
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316 | // a name with the postfix "_WOSD" that means "WithOut String Duplication" ) will be free'd by the |
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317 | // XMLNode class. For example, it means that this is incorrect: |
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318 | // xNode.addText_WOSD("foo"); |
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319 | // xNode.updateAttribute_WOSD("#newcolor" ,NULL,"color"); |
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320 | // In opposition, this is correct: |
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321 | // xNode.addText("foo"); |
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322 | // xNode.addText_WOSD(stringDup("foo")); |
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323 | // xNode.updateAttribute("#newcolor" ,NULL,"color"); |
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324 | // xNode.updateAttribute_WOSD(stringDup("#newcolor"),NULL,"color"); |
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325 | // Typically, you will never do: |
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326 | // char *b=(char*)malloc(...); |
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327 | // xNode.addText(b); |
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328 | // free(b); |
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329 | // ... but rather: |
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330 | // char *b=(char*)malloc(...); |
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331 | // xNode.addText_WOSD(b); |
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332 | // ('free(b)' is performed by the XMLNode class) |
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333 | |
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334 | static XMLNode createXMLTopNode_WOSD(XMLSTR lpszName, char isDeclaration=FALSE); |
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335 | XMLNode addChild_WOSD(XMLSTR lpszName, char isDeclaration=FALSE, XMLElementPosition pos=-1); |
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336 | XMLAttribute *addAttribute_WOSD(XMLSTR lpszName, XMLSTR lpszValue); |
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337 | XMLCSTR addText_WOSD(XMLSTR lpszValue, XMLElementPosition pos=-1); |
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338 | XMLClear *addClear_WOSD(XMLSTR lpszValue, XMLCSTR lpszOpen=NULL, XMLCSTR lpszClose=NULL, XMLElementPosition pos=-1); |
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339 | |
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340 | XMLCSTR updateName_WOSD(XMLSTR lpszName); |
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341 | XMLAttribute *updateAttribute_WOSD(XMLAttribute *newAttribute, XMLAttribute *oldAttribute); |
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342 | XMLAttribute *updateAttribute_WOSD(XMLSTR lpszNewValue, XMLSTR lpszNewName=NULL,int i=0); |
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343 | XMLAttribute *updateAttribute_WOSD(XMLSTR lpszNewValue, XMLSTR lpszNewName,XMLCSTR lpszOldName); |
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344 | XMLCSTR updateText_WOSD(XMLSTR lpszNewValue, int i=0); |
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345 | XMLCSTR updateText_WOSD(XMLSTR lpszNewValue, XMLCSTR lpszOldValue); |
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346 | XMLClear *updateClear_WOSD(XMLSTR lpszNewContent, int i=0); |
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347 | XMLClear *updateClear_WOSD(XMLClear *newP,XMLClear *oldP); |
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348 | XMLClear *updateClear_WOSD(XMLSTR lpszNewValue, XMLCSTR lpszOldValue); |
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349 | |
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350 | // These are some useful functions when you want to insert a childNode, a text or a XMLClearTag in the |
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351 | // middle (at a specified position) of a XMLNode tree already constructed. The value returned by these |
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352 | // methods is to be used as last parameter (parameter 'pos') of addChild, addText or addClear. |
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353 | XMLElementPosition positionOfText(int i=0) const; |
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354 | XMLElementPosition positionOfText(XMLCSTR lpszValue) const; |
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355 | XMLElementPosition positionOfClear(int i=0) const; |
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356 | XMLElementPosition positionOfClear(XMLCSTR lpszValue) const; |
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357 | XMLElementPosition positionOfClear(XMLClear *a) const; |
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358 | XMLElementPosition positionOfChildNode(int i=0) const; |
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359 | XMLElementPosition positionOfChildNode(XMLNode x) const; |
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360 | XMLElementPosition positionOfChildNode(XMLCSTR name, int i=0) const; // return the position of the ith childNode with the specified name |
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361 | // if (name==NULL) return the position of the ith childNode |
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362 | |
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363 | // The setGlobalOptions function allows you to change tree global parameters that affect string&file |
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364 | // parsing. First of all, you most-probably will never have to change these 3 global parameters. |
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365 | // The return value of the setGlobalOptions function is "0" when there are no errors. If you try to |
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366 | // set an unrecognized encoding then the return value will be "1" to signal an error. |
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367 | // |
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368 | // About the "guessWideCharChars" parameter: |
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369 | // If "guessWideCharChars=1" and if this library is compiled in WideChar mode, then the |
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370 | // "parseFile" and "openFileHelper" functions will test if the file contains ASCII |
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371 | // characters. If this is the case, then the file will be loaded and converted in memory to |
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372 | // WideChar before being parsed. If "guessWideCharChars=0", no conversion will |
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373 | // be performed. |
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374 | // |
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375 | // If "guessWideCharChars=1" and if this library is compiled in ASCII/UTF8/char* mode, then the |
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376 | // "parseFile" and "openFileHelper" functions will test if the file contains WideChar |
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377 | // characters. If this is the case, then the file will be loaded and converted in memory to |
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378 | // ASCII/UTF8/char* before being parsed. If "guessWideCharChars=0", no conversion will |
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379 | // be performed |
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380 | // |
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381 | // Sometime, it's useful to set "guessWideCharChars=0" to disable any conversion |
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382 | // because the test to detect the file-type (ASCII/UTF8/char* or WideChar) may fail (rarely). |
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383 | // |
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384 | // About the "characterEncoding" parameter: |
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385 | // This parameter is only meaningful when compiling in char* mode (multibyte character mode). |
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386 | // In wchar_t* (wide char mode), this parameter is ignored. This parameter should be one of the |
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387 | // three currently recognized encodings: XMLNode::encoding_UTF8, XMLNode::encoding_ascii, |
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388 | // XMLNode::encoding_ShiftJIS. |
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389 | // |
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390 | // About the "dropWhiteSpace" parameter: |
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391 | // In most situations, text fields containing only white spaces (and carriage returns) |
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392 | // are useless. Even more, these "empty" text fields are annoying because they increase the |
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393 | // complexity of the user's code for parsing. So, 99% of the time, it's better to drop |
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394 | // the "empty" text fields. However The XML specification indicates that no white spaces |
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395 | // should be lost when parsing the file. So to be perfectly XML-compliant, you should set |
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396 | // dropWhiteSpace=0. A note of caution: if you set "dropWhiteSpace=0", the parser will be |
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397 | // slower and your code will be more complex. |
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398 | |
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399 | // Enumeration for XML character encoding. |
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400 | typedef enum XMLCharEncoding { encoding_UTF8=1, encoding_ascii=2, encoding_ShiftJIS=3 } XMLCharEncoding; |
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401 | |
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402 | static char setGlobalOptions(XMLCharEncoding characterEncoding=XMLNode::encoding_UTF8, char guessWideCharChars=1, char dropWhiteSpace=1); |
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403 | |
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404 | // The next function try to guess the character encoding. You most-probably will never |
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405 | // have to use this function. It then returns the appropriate value of the global parameter |
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406 | // "characterEncoding" described above. The guess is based on the content of a buffer of length |
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407 | // "bufLen" bytes that contains the first bytes (minimum 25 bytes; 200 bytes is a good value) of the |
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408 | // file to be parsed. The "openFileHelper" function is using this function to automatically compute |
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409 | // the value of the "characterEncoding" global parameter. There are several heuristics used to do the |
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410 | // guess. One of the heuristic is based on the "encoding" attribute. The original XML specifications |
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411 | // forbids to use this attribute to do the guess but you can still use it if you set |
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412 | // "useXMLEncodingAttribute" to 1 (this is the default behavior and the behavior of most parsers). |
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413 | // If an inconsistency in the encoding is detected, then the return value is "0". |
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414 | |
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415 | static XMLCharEncoding guessCharEncoding(void *buffer, int bufLen, char useXMLEncodingAttribute=1); |
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416 | |
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417 | private: |
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418 | |
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419 | // these are functions and structures used internally by the XMLNode class (don't bother about them): |
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420 | |
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421 | typedef struct XMLNodeDataTag // to allow shallow copy and "intelligent/smart" pointers (automatic delete): |
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422 | { |
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423 | XMLCSTR lpszName; // Element name (=NULL if root) |
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424 | int nChild, // Number of child nodes |
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425 | nText, // Number of text fields |
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426 | nClear, // Number of Clear fields (comments) |
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427 | nAttribute; // Number of attributes |
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428 | char isDeclaration; // Whether node is an XML declaration - '<?xml ?>' |
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429 | struct XMLNodeDataTag *pParent; // Pointer to parent element (=NULL if root) |
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430 | XMLNode *pChild; // Array of child nodes |
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431 | XMLCSTR *pText; // Array of text fields |
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432 | XMLClear *pClear; // Array of clear fields |
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433 | XMLAttribute *pAttribute; // Array of attributes |
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434 | int *pOrder; // order of the child_nodes,text_fields,clear_fields |
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435 | int ref_count; // for garbage collection (smart pointers) |
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436 | } XMLNodeData; |
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437 | XMLNodeData *d; |
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438 | |
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439 | char parseClearTag(void *px, void *pa); |
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440 | char maybeAddTxT(void *pa, XMLCSTR tokenPStr); |
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441 | int ParseXMLElement(void *pXML); |
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442 | void *addToOrder(int memInc, int *_pos, int nc, void *p, int size, XMLElementType xtype); |
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443 | int indexText(XMLCSTR lpszValue) const; |
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444 | int indexClear(XMLCSTR lpszValue) const; |
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445 | XMLNode addChild_priv(int,XMLSTR,char,int); |
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446 | XMLAttribute *addAttribute_priv(int,XMLSTR,XMLSTR); |
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447 | XMLCSTR addText_priv(int,XMLSTR,int); |
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448 | XMLClear *addClear_priv(int,XMLSTR,XMLCSTR,XMLCSTR,int); |
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449 | void deleteNodeContent_priv(char,char); |
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450 | static inline XMLElementPosition findPosition(XMLNodeData *d, int index, XMLElementType xtype); |
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451 | static int CreateXMLStringR(XMLNodeData *pEntry, XMLSTR lpszMarker, int nFormat); |
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452 | static int removeOrderElement(XMLNodeData *d, XMLElementType t, int index); |
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453 | static void exactMemory(XMLNodeData *d); |
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454 | static int detachFromParent(XMLNodeData *d); |
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455 | } XMLNode; |
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456 | |
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457 | // This structure is given by the function "enumContents". |
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458 | typedef struct XMLNodeContents |
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459 | { |
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460 | // This dictates what's the content of the XMLNodeContent |
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461 | enum XMLElementType etype; |
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462 | // should be an union to access the appropriate data. |
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463 | // compiler does not allow union of object with constructor... too bad. |
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464 | XMLNode child; |
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465 | XMLAttribute attrib; |
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466 | XMLCSTR text; |
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467 | XMLClear clear; |
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468 | |
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469 | } XMLNodeContents; |
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470 | |
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471 | XMLDLLENTRY void freeXMLString(XMLSTR t); // {free(t);} |
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472 | |
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473 | // Duplicate (copy in a new allocated buffer) the source string. This is |
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474 | // a very handy function when used with all the "XMLNode::*_WOSD" functions. |
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475 | // (If (cbData!=0) then cbData is the number of chars to duplicate) |
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476 | XMLDLLENTRY XMLSTR stringDup(XMLCSTR source, int cbData=0); |
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477 | |
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478 | // The following class is processing strings so that all the characters |
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479 | // &,",',<,> are replaced by their XML equivalent: &, ", ', <, >. |
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480 | // This class is useful when creating from scratch an XML file using the |
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481 | // "printf", "fprintf", "cout",... functions. If you are creating from scratch an |
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482 | // XML file using the provided XMLNode class you must not use the "ToXMLStringTool" |
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483 | // class (the "XMLNode" class does the processing job for you during rendering). |
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484 | // Using the "ToXMLStringTool class" and the "fprintf function" is THE most efficient |
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485 | // way to produce VERY large XML documents VERY fast. |
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486 | typedef struct XMLDLLENTRY ToXMLStringTool |
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487 | { |
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488 | public: |
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489 | ToXMLStringTool(): buf(NULL),buflen(0){} |
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490 | ~ToXMLStringTool(); |
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491 | void freeBuffer(); |
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492 | |
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493 | XMLSTR toXML(XMLCSTR source); |
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494 | |
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495 | // The next function is deprecated because there is a possibility of |
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496 | // "destination-buffer-overflow". It converts the string |
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497 | // "source" to the string "dest". |
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498 | static XMLSTR toXMLUnSafe(XMLSTR dest,XMLCSTR source); |
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499 | |
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500 | private: |
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501 | XMLSTR buf; |
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502 | int buflen; |
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503 | }ToXMLStringTool; |
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504 | |
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505 | // Below is a class that allows you to include any binary data (images, sounds,...) |
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506 | // into an XML document using "Base64 encoding". This class is completely |
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507 | // separated from the rest of the xmlParser library and can be removed without any problem. |
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508 | // To include some binary data into an XML file, you must convert the binary data into |
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509 | // standard text (using "encode"). To retrieve the original binary data from the |
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510 | // b64-encoded text included inside the XML file use "decode". Alternatively, these |
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511 | // functions can also be used to "encrypt/decrypt" some critical data contained inside |
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512 | // the XML (it's not a strong encryption at all, but sometimes it can be useful). |
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513 | |
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514 | typedef struct XMLDLLENTRY XMLParserBase64Tool |
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515 | { |
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516 | public: |
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517 | XMLParserBase64Tool(): buf(NULL),buflen(0){} |
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518 | ~XMLParserBase64Tool(); |
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519 | void freeBuffer(); |
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520 | |
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521 | // returns the length of the base64 string that encodes a data buffer of size inBufLen bytes. |
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522 | // If "formatted" parameter is true, some space will be reserved for a carriage-return every 72 chars. |
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523 | static int encodeLength(int inBufLen, char formatted=0); |
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524 | |
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525 | // The "base64Encode" function returns a string containing the base64 encoding of "inByteLen" bytes |
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526 | // from "inByteBuf". If "formatted" parameter is true, then there will be a carriage-return every 72 chars. |
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527 | // The string will be free'd when the XMLParserBase64Tool object is deleted. |
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528 | // All returned strings are sharing the same memory space. |
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529 | XMLSTR encode(unsigned char *inByteBuf, unsigned int inByteLen, char formatted=0); |
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530 | |
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531 | // returns the number of bytes which will be decoded from "inString". |
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532 | static unsigned int decodeSize(XMLCSTR inString, XMLError *xe=NULL); |
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533 | |
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534 | // returns a pointer to a buffer containing the binary data decoded from "inString" |
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535 | // If "inString" is malformed NULL will be returned |
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536 | // The output buffer will be free'd when the XMLParserBase64Tool object is deleted. |
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537 | // All output buffer are sharing the same memory space. |
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538 | unsigned char* decode(XMLCSTR inString, int *outByteLen=NULL, XMLError *xe=NULL); |
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539 | |
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540 | // The next function is deprecated. |
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541 | // decodes data from "inString" to "outByteBuf". You need to provide the size (in byte) of "outByteBuf" |
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542 | // in "inMaxByteOutBuflen". If "outByteBuf" is not large enough or if data is malformed, then "FALSE" |
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543 | // will be returned; otherwise "TRUE". |
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544 | static unsigned char decode(XMLCSTR inString, unsigned char *outByteBuf, int inMaxByteOutBuflen, XMLError *xe=NULL); |
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545 | |
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546 | private: |
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547 | void *buf; |
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548 | int buflen; |
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549 | void alloc(int newsize); |
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550 | }XMLParserBase64Tool; |
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551 | |
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552 | #undef XMLDLLENTRY |
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553 | |
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554 | #endif |
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