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| 2 | ** | 
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| 3 | ** Copyright (C) 2009 Nokia Corporation and/or its subsidiary(-ies). | 
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| 40 | ****************************************************************************/ | 
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| 41 |  | 
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| 42 | /*! | 
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| 43 | \page plugins-howto.html | 
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| 44 | \title How to Create Qt Plugins | 
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| 45 | \brief A guide to creating plugins to extend Qt applications and functionality provided by Qt. | 
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| 46 | \ingroup howto | 
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| 47 |  | 
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| 48 | \keyword QT_DEBUG_PLUGINS | 
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| 49 | \keyword QT_NO_PLUGIN_CHECK | 
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| 50 |  | 
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| 51 | Qt provides two APIs for creating plugins: | 
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| 52 |  | 
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| 53 | \list | 
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| 54 | \o A higher-level API for writing extensions to Qt itself: custom database | 
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| 55 | drivers, image formats, text codecs, custom styles, etc. | 
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| 56 | \o A lower-level API for extending Qt applications. | 
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| 57 | \endlist | 
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| 58 |  | 
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| 59 | For example, if you want to write a custom QStyle subclass and | 
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| 60 | have Qt applications load it dynamically, you would use the | 
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| 61 | higher-level API. | 
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| 62 |  | 
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| 63 | Since the higher-level API is built on top of the lower-level API, | 
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| 64 | some issues are common to both. | 
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| 65 |  | 
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| 66 | If you want to provide plugins for use with \QD, see the QtDesigner | 
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| 67 | module documentation. | 
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| 68 |  | 
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| 69 | Topics: | 
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| 70 |  | 
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| 71 | \tableofcontents | 
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| 72 |  | 
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| 73 | \section1 The Higher-Level API: Writing Qt Extensions | 
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| 74 |  | 
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| 75 | Writing a plugin that extends Qt itself is achieved by | 
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| 76 | subclassing the appropriate plugin base class, implementing a few | 
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| 77 | functions, and adding a macro. | 
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| 78 |  | 
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| 79 | There are several plugin base classes. Derived plugins are stored | 
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| 80 | by default in sub-directories of the standard plugin directory. Qt | 
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| 81 | will not find plugins if they are not stored in the right | 
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| 82 | directory. | 
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| 83 |  | 
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| 84 | \table | 
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| 85 | \header \o Base Class              \o Directory Name                \o Key Case Sensitivity | 
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| 86 | \row    \o QAccessibleBridgePlugin \o \c accessiblebridge \o Case Sensitive | 
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| 87 | \row    \o QAccessiblePlugin       \o \c accessible       \o Case Sensitive | 
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| 88 | \row    \o QDecorationPlugin       \o \c decorations      \o Case Insensitive | 
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| 89 | \row    \o QFontEnginePlugin       \o \c fontengines      \o Case Insensitive | 
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| 90 | \row    \o QIconEnginePlugin       \o \c iconengines      \o Case Insensitive | 
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| 91 | \row    \o QImageIOPlugin          \o \c imageformats     \o Case Sensitive | 
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| 92 | \row    \o QInputContextPlugin     \o \c inputmethods     \o Case Sensitive | 
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| 93 | \row    \o QKbdDriverPlugin        \o \c kbddrivers       \o Case Insensitive | 
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| 94 | \row    \o QMouseDriverPlugin      \o \c mousedrivers     \o Case Insensitive | 
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| 95 | \row    \o QPictureFormatPlugin    \o \c pictureformats   \o Case Sensitive | 
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| 96 | \row    \o QScreenDriverPlugin     \o \c gfxdrivers       \o Case Insensitive | 
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| 97 | \row    \o QScriptExtensionPlugin  \o \c script           \o Case Sensitive | 
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| 98 | \row    \o QSqlDriverPlugin        \o \c sqldrivers       \o Case Sensitive | 
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| 99 | \row    \o QStylePlugin            \o \c styles           \o Case Insensitive | 
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| 100 | \row    \o QTextCodecPlugin        \o \c codecs           \o Case Sensitive | 
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| 101 | \endtable | 
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| 102 |  | 
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| 103 | But where is the \c{plugins} directory? When the application | 
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| 104 | is run, Qt will first treat the application's executable directory | 
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| 105 | as the \c{pluginsbase}. For example if the application is in | 
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| 106 | \c{C:\Program Files\MyApp} and has a style plugin, Qt will look in | 
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| 107 | \c{C:\Program Files\MyApp\styles}. (See | 
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| 108 | QCoreApplication::applicationDirPath() for how to find out where | 
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| 109 | the application's executable is.) Qt will also look in the | 
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| 110 | directory specified by | 
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| 111 | QLibraryInfo::location(QLibraryInfo::PluginsPath), which typically | 
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| 112 | is located in \c QTDIR/plugins (where \c QTDIR is the directory | 
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| 113 | where Qt is installed). If you want Qt to look in additional | 
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| 114 | places you can add as many paths as you need with calls to | 
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| 115 | QCoreApplication::addLibraryPath(). And if you want to set your | 
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| 116 | own path or paths you can use QCoreApplication::setLibraryPaths(). | 
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| 117 | You can also use a \c qt.conf file to override the hard-coded | 
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| 118 | paths that are compiled into the Qt library. For more information, | 
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| 119 | see the \l {Using qt.conf} documentation. Yet another possibility | 
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| 120 | is to set the \c QT_PLUGIN_PATH environment variable before running | 
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| 121 | the application. If set, Qt will look for plugins in the | 
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| 122 | paths (separated by the system path separator) specified in the variable. | 
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| 123 |  | 
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| 124 | Suppose that you have a new style class called \c MyStyle that you | 
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| 125 | want to make available as a plugin. The required code is | 
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| 126 | straightforward, here is the class definition (\c | 
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| 127 | mystyleplugin.h): | 
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| 128 |  | 
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| 129 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 0 | 
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| 130 |  | 
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| 131 | Ensure that the class implementation is located in a \c .cpp file | 
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| 132 | (including the class definition): | 
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| 133 |  | 
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| 134 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 1 | 
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| 135 |  | 
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| 136 | (Note that QStylePlugin is case insensitive, and the lower-case | 
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| 137 | version of the key is used in our | 
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| 138 | \l{QStylePlugin::create()}{create()} implementation; most other | 
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| 139 | plugins are case sensitive.) | 
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| 140 |  | 
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| 141 | For database drivers, image formats, text codecs, and most other | 
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| 142 | plugin types, no explicit object creation is required. Qt will | 
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| 143 | find and create them as required. Styles are an exception, since | 
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| 144 | you might want to set a style explicitly in code. To apply a | 
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| 145 | style, use code like this: | 
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| 146 |  | 
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| 147 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 2 | 
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| 148 |  | 
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| 149 | Some plugin classes require additional functions to be | 
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| 150 | implemented. See the class documentation for details of the | 
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| 151 | virtual functions that must be reimplemented for each type of | 
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| 152 | plugin. | 
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| 153 |  | 
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| 154 | Qt applications automatically know which plugins are available, | 
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| 155 | because plugins are stored in the standard plugin subdirectories. | 
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| 156 | Because of this applications don't require any code to find and load | 
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| 157 | plugins, since Qt handles them automatically. | 
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| 158 |  | 
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| 159 | The default directory for plugins is \c{QTDIR/plugins} (where \c | 
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| 160 | QTDIR is the directory where Qt is installed), with each type of | 
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| 161 | plugin in a subdirectory for that type, e.g. \c styles. If you | 
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| 162 | want your applications to use plugins and you don't want to use | 
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| 163 | the standard plugins path, have your installation process | 
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| 164 | determine the path you want to use for the plugins, and save the | 
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| 165 | path, e.g. using QSettings, for the application to read when it | 
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| 166 | runs. The application can then call | 
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| 167 | QCoreApplication::addLibraryPath() with this path and your | 
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| 168 | plugins will be available to the application. Note that the final | 
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| 169 | part of the path (e.g., \c styles) cannot be changed. | 
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| 170 |  | 
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| 171 | The normal way to include a plugin with an application is either | 
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| 172 | to \l{Static Plugins}{compile it in with the application} or to | 
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| 173 | compile it into a dynamic library and use it like any other | 
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| 174 | library. | 
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| 175 |  | 
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| 176 | If you want the plugin to be loadable then one approach is to | 
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| 177 | create a subdirectory under the application and place the plugin | 
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| 178 | in that directory. If you distribute any of the plugins that come | 
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| 179 | with Qt (the ones located in the \c plugins directory), you must | 
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| 180 | copy the sub-directory under \c plugins where the plugin is | 
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| 181 | located to your applications root folder (i.e., do not include the | 
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| 182 | \c plugins directory). | 
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| 183 |  | 
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| 184 | For more information about deployment, | 
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| 185 | see the \l {Deploying Qt Applications} documentation. | 
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| 186 |  | 
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| 187 | The \l{Style Plugin Example} shows how to implement a plugin | 
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| 188 | that extends the QStylePlugin base class. | 
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| 189 |  | 
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| 190 | \section1 The Lower-Level API: Extending Qt Applications | 
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| 191 |  | 
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| 192 | Not only Qt itself but also Qt application can be extended | 
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| 193 | through plugins. This requires the application to detect and load | 
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| 194 | plugins using QPluginLoader. In that context, plugins may provide | 
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| 195 | arbitrary functionality and are not limited to database drivers, | 
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| 196 | image formats, text codecs, styles, and the other types of plugin | 
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| 197 | that extend Qt's functionality. | 
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| 198 |  | 
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| 199 | Making an application extensible through plugins involves the | 
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| 200 | following steps: | 
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| 201 |  | 
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| 202 | \list 1 | 
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| 203 | \o Define a set of interfaces (classes with only pure virtual | 
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| 204 | functions) used to talk to the plugins. | 
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| 205 | \o Use the Q_DECLARE_INTERFACE() macro to tell Qt's | 
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| 206 | \l{meta-object system} about the interface. | 
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| 207 | \o Use QPluginLoader in the application to load the plugins. | 
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| 208 | \o Use qobject_cast() to test whether a plugin implements a given | 
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| 209 | interface. | 
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| 210 | \endlist | 
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| 211 |  | 
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| 212 | Writing a plugin involves these steps: | 
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| 213 |  | 
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| 214 | \list 1 | 
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| 215 | \o Declare a plugin class that inherits from QObject and from the | 
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| 216 | interfaces that the plugin wants to provide. | 
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| 217 | \o Use the Q_INTERFACES() macro to tell Qt's \l{meta-object | 
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| 218 | system} about the interfaces. | 
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| 219 | \o Export the plugin using the Q_EXPORT_PLUGIN2() macro. | 
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| 220 | \o Build the plugin using a suitable \c .pro file. | 
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| 221 | \endlist | 
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| 222 |  | 
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| 223 | For example, here's the definition of an interface class: | 
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| 224 |  | 
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| 225 | \snippet examples/tools/plugandpaint/interfaces.h 2 | 
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| 226 |  | 
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| 227 | Here's the definition of a plugin class that implements that | 
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| 228 | interface: | 
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| 229 |  | 
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| 230 | \snippet examples/tools/plugandpaintplugins/extrafilters/extrafiltersplugin.h 0 | 
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| 231 |  | 
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| 232 | The \l{tools/plugandpaint}{Plug & Paint} example documentation | 
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| 233 | explains this process in detail. See also \l{Creating Custom | 
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| 234 | Widgets for Qt Designer} for information about issues that are | 
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| 235 | specific to \QD. You can also take a look at the \l{Echo Plugin | 
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| 236 | Example} is a more trivial example on how to implement a plugin | 
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| 237 | that extends Qt applications. Please note that a QCoreApplication | 
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| 238 | must have been initialized before plugins can be loaded. | 
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| 239 |  | 
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| 240 | \section1 Loading and Verifying Plugins Dynamically | 
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| 241 |  | 
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| 242 | When loading plugins, the Qt library does some sanity checking to | 
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| 243 | determine whether or not the plugin can be loaded and used. This | 
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| 244 | provides the ability to have multiple versions and configurations of | 
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| 245 | the Qt library installed side by side. | 
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| 246 |  | 
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| 247 | \list | 
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| 248 | \o Plugins linked with a Qt library that has a higher version number | 
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| 249 | will not be loaded by a library with a lower version number. | 
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| 250 |  | 
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| 251 | \br | 
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| 252 | \bold{Example:} Qt 4.3.0 will \e{not} load a plugin built with Qt 4.3.1. | 
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| 253 |  | 
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| 254 | \o Plugins linked with a Qt library that has a lower major version | 
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| 255 | number will not be loaded by a library with a higher major version | 
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| 256 | number. | 
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| 257 |  | 
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| 258 | \br | 
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| 259 | \bold{Example:} Qt 4.3.1 will \e{not} load a plugin built with Qt 3.3.1. | 
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| 260 | \br | 
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| 261 | \bold{Example:} Qt 4.3.1 will load plugins built with Qt 4.3.0 and Qt 4.2.3. | 
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| 262 |  | 
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| 263 | \o The Qt library and all plugins are built using a \e {build | 
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| 264 | key}. The build key in the Qt library is examined against the build | 
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| 265 | key in the plugin, and if they match, the plugin is loaded. If the | 
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| 266 | build keys do not match, then the Qt library refuses to load the | 
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| 267 | plugin. | 
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| 268 |  | 
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| 269 | \br \bold{Rationale:} See the \l{#The Build Key}{The Build Key} section below. | 
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| 270 | \endlist | 
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| 271 |  | 
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| 272 | When building plugins to extend an application, it is important to ensure | 
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| 273 | that the plugin is configured in the same way as the application. This means | 
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| 274 | that if the application was built in release mode, plugins should be built | 
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| 275 | in release mode, too. | 
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| 276 |  | 
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| 277 | If you configure Qt to be built in both debug and release modes, | 
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| 278 | but only build applications in release mode, you need to ensure that your | 
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| 279 | plugins are also built in release mode. By default, if a debug build of Qt is | 
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| 280 | available, plugins will \e only be built in debug mode. To force the | 
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| 281 | plugins to be built in release mode, add the following line to the plugin's | 
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| 282 | project file: | 
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| 283 |  | 
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| 284 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 3 | 
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| 285 |  | 
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| 286 | This will ensure that the plugin is compatible with the version of the library | 
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| 287 | used in the application. | 
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| 288 |  | 
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| 289 | \section2 The Build Key | 
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| 290 |  | 
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| 291 | When loading plugins, Qt checks the build key of each plugin against its | 
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| 292 | own configuration to ensure that only compatible plugins are loaded; any | 
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| 293 | plugins that are configured differently are not loaded. | 
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| 294 |  | 
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| 295 | The build key contains the following information: | 
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| 296 | \list | 
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| 297 | \o Architecture, operating system and compiler. | 
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| 298 |  | 
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| 299 | \e {Rationale:} | 
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| 300 | In cases where different versions of the same compiler do not | 
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| 301 | produce binary compatible code, the version of the compiler is | 
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| 302 | also present in the build key. | 
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| 303 |  | 
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| 304 | \o Configuration of the Qt library. The configuration is a list | 
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| 305 | of the missing features that affect the available API in the | 
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| 306 | library. | 
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| 307 |  | 
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| 308 | \e {Rationale:} | 
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| 309 | Two different configurations of the same version of | 
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| 310 | the Qt library are not binary compatible. The Qt library that | 
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| 311 | loads the plugin uses the list of (missing) features to | 
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| 312 | determine if the plugin is binary compatible. | 
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| 313 |  | 
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| 314 | \e {Note:} There are cases where a plugin can use features that are | 
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| 315 | available in two different configurations. However, the | 
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| 316 | developer writing plugins would need to know which features are | 
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| 317 | in use, both in their plugin and internally by the utility | 
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| 318 | classes in Qt. The Qt library would require complex feature | 
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| 319 | and dependency queries and verification when loading plugins. | 
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| 320 | Requiring this would place an unnecessary burden on the developer, and | 
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| 321 | increase the overhead of loading a plugin. To reduce both | 
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| 322 | development time and application runtime costs, a simple string | 
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| 323 | comparision of the build keys is used. | 
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| 324 |  | 
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| 325 | \o Optionally, an extra string may be specified on the configure | 
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| 326 | script command line. | 
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| 327 |  | 
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| 328 | \e {Rationale:} | 
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| 329 | When distributing binaries of the Qt library with an | 
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| 330 | application, this provides a way for developers to write | 
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| 331 | plugins that can only be loaded by the library with which the | 
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| 332 | plugins were linked. | 
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| 333 | \endlist | 
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| 334 |  | 
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| 335 | For debugging purposes, it is possible to override the run-time build key | 
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| 336 | checks by configuring Qt with the \c QT_NO_PLUGIN_CHECK preprocessor macro | 
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| 337 | defined. | 
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| 338 |  | 
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| 339 | \section1 Static Plugins | 
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| 340 |  | 
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| 341 | Plugins can be linked statically against your application. If you | 
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| 342 | build the static version of Qt, this is the only option for | 
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| 343 | including Qt's predefined plugins. | 
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| 344 |  | 
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| 345 | When compiled as a static library, Qt provides the following | 
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| 346 | static plugins: | 
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| 347 |  | 
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| 348 | \table | 
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| 349 | \header \o Plugin name                  \o Type               \o Description | 
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| 350 | \row    \o \c qtaccessiblecompatwidgets \o Accessibility      \o Accessibility for Qt 3 support widgets | 
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| 351 | \row    \o \c qtaccessiblewidgets       \o Accessibility      \o Accessibility for Qt widgets | 
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| 352 | \row    \o \c qdecorationdefault        \o Decorations (Qt Extended) \o Default style | 
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| 353 | \row    \o \c qdecorationwindows        \o Decorations (Qt Extended) \o Windows style | 
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| 354 | \row    \o \c qgif                      \o Image formats      \o GIF | 
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| 355 | \row    \o \c qjpeg                     \o Image formats      \o JPEG | 
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| 356 | \row    \o \c qmng                      \o Image formats      \o MNG | 
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| 357 | \row    \o \c qico                      \o Image formats      \o ICO | 
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| 358 | \row    \o \c qsvg                      \o Image formats      \o SVG | 
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| 359 | \row    \o \c qtiff                     \o Image formats      \o TIFF | 
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| 360 | \row    \o \c qimsw_multi               \o Input methods (Qt Extended) \o Input Method Switcher | 
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| 361 | \row    \o \c qwstslibmousehandler      \o Mouse drivers (Qt Extended) \o \c tslib mouse | 
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| 362 | \row    \o \c qgfxtransformed           \o Graphic drivers (Qt Extended) \o Transformed screen | 
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| 363 | \row    \o \c qgfxvnc                   \o Graphic drivers (Qt Extended) \o VNC | 
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| 364 | \row    \o \c qscreenvfb                \o Graphic drivers (Qt Extended) \o Virtual frame buffer | 
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| 365 | \row    \o \c qsqldb2                   \o SQL driver         \o IBM DB2    \row    \o \c qsqlibase       \o SQL driver         \o Borland InterBase | 
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| 366 | \row    \o \c qsqlite                   \o SQL driver         \o SQLite version 3 | 
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| 367 | \row    \o \c qsqlite2                  \o SQL driver         \o SQLite version 2 | 
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| 368 | \row    \o \c qsqlmysql                 \o SQL driver         \o MySQL | 
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| 369 | \row    \o \c qsqloci                   \o SQL driver         \o Oracle (OCI) | 
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| 370 | \row    \o \c qsqlodbc                  \o SQL driver         \o Open Database Connectivity (ODBC) | 
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| 371 | \row    \o \c qsqlpsql                  \o SQL driver         \o PostgreSQL | 
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| 372 | \row    \o \c qsqltds                   \o SQL driver         \o Sybase Adaptive Server (TDS) | 
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| 373 | \row    \o \c qcncodecs                 \o Text codecs        \o Simplified Chinese (People's Republic of China) | 
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| 374 | \row    \o \c qjpcodecs                 \o Text codecs        \o Japanese | 
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| 375 | \row    \o \c qkrcodecs                 \o Text codecs        \o Korean | 
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| 376 | \row    \o \c qtwcodecs                 \o Text codecs        \o Traditional Chinese (Taiwan) | 
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| 377 | \endtable | 
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| 378 |  | 
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| 379 | To link statically against those plugins, you need to use the | 
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| 380 | Q_IMPORT_PLUGIN() macro in your application and you need to add | 
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| 381 | the required plugins to your build using \c QTPLUGIN. | 
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| 382 | For example, in your \c main.cpp: | 
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| 383 |  | 
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| 384 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 4 | 
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| 385 |  | 
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| 386 | In the \c .pro file for your application, you need the following | 
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| 387 | entry: | 
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| 388 |  | 
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| 389 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 5 | 
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| 390 |  | 
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| 391 | It is also possible to create your own static plugins, by | 
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| 392 | following these steps: | 
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| 393 |  | 
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| 394 | \list 1 | 
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| 395 | \o Add \c{CONFIG += static} to your plugin's \c .pro file. | 
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| 396 | \o Use the Q_IMPORT_PLUGIN() macro in your application. | 
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| 397 | \o Link your application with your plugin library using \c LIBS | 
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| 398 | in the \c .pro file. | 
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| 399 | \endlist | 
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| 400 |  | 
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| 401 | See the \l{tools/plugandpaint}{Plug & Paint} example and the | 
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| 402 | associated \l{tools/plugandpaintplugins/basictools}{Basic Tools} | 
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| 403 | plugin for details on how to do this. | 
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| 404 |  | 
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| 405 | \note If you are not using qmake to build your application you need | 
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| 406 | to make sure that the \c{QT_STATICPLUGIN} preprocessor macro is | 
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| 407 | defined. | 
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| 408 |  | 
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| 409 | \sa QPluginLoader, QLibrary, {Plug & Paint Example} | 
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| 410 |  | 
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| 411 | \section1 The Plugin Cache | 
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| 412 |  | 
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| 413 | In order to speed up loading and validation of plugins, some of | 
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| 414 | the information that is collected when plugins are loaded is cached | 
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| 415 | through QSettings. This includes information about whether or not | 
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| 416 | a plugin was successfully loaded, so that subsequent load operations | 
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| 417 | don't try to load an invalid plugin. However, if the "last modified" | 
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| 418 | timestamp of a plugin has changed, the plugin's cache entry is | 
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| 419 | invalidated and the plugin is reloaded regardless of the values in | 
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| 420 | the cache entry, and the cache entry itself is updated with the new | 
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| 421 | result. | 
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| 422 |  | 
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| 423 | This also means that the timestamp must be updated each time the | 
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| 424 | plugin or any dependent resources (such as a shared library) is | 
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| 425 | updated, since the dependent resources might influence the result | 
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| 426 | of loading a plugin. | 
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| 427 |  | 
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| 428 | Sometimes, when developing plugins, it is necessary to remove entries | 
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| 429 | from the plugin cache. Since Qt uses QSettings to manage the plugin | 
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| 430 | cache, the locations of plugins are platform-dependent; see | 
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| 431 | \l{QSettings#Platform-Specific Notes}{the QSettings documentation} | 
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| 432 | for more information about each platform. | 
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| 433 |  | 
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| 434 | For example, on Windows the entries are stored in the registry, and the | 
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| 435 | paths for each plugin will typically begin with either of these two strings: | 
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| 436 |  | 
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| 437 | \snippet doc/src/snippets/code/doc_src_plugins-howto.qdoc 6 | 
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| 438 |  | 
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| 439 | \section1 Debugging Plugins | 
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| 440 |  | 
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| 441 | There are a number of issues that may prevent correctly-written plugins from | 
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| 442 | working with the applications that are designed to use them. Many of these | 
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| 443 | are related to differences in the way that plugins and applications have been | 
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| 444 | built, often arising from separate build systems and processes. | 
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| 445 |  | 
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| 446 | The following table contains descriptions of the common causes of problems | 
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| 447 | developers experience when creating plugins: | 
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| 448 |  | 
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| 449 | \table | 
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| 450 | \header \o Problem \o Cause \o Solution | 
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| 451 | \row \o Plugins sliently fail to load even when opened directly by the | 
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| 452 | application. \QD shows the plugin libraries in its | 
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| 453 | \gui{Help|About Plugins} dialog, but no plugins are listed under each | 
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| 454 | of them. | 
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| 455 | \o The application and its plugins are built in different modes. | 
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| 456 | \o Either share the same build information or build the plugins in both | 
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| 457 | debug and release modes by appending the \c debug_and_release to | 
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| 458 | the \l{qmake Variable Reference#CONFIG}{CONFIG} variable in each of | 
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| 459 | their project files. | 
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| 460 | \row \o A valid plugin that replaces an invalid (or broken) plugin fails to load. | 
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| 461 | \o The entry for the plugin in the plugin cache indicates that the original | 
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| 462 | plugin could not be loaded, causing Qt to ignore the replacement. | 
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| 463 | \o Either ensure that the plugin's timestamp is updated, or delete the | 
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| 464 | entry in the \l{#The Plugin Cache}{plugin cache}. | 
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| 465 | \endtable | 
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| 466 |  | 
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| 467 | You can also use the \c QT_DEBUG_PLUGINS environment variable to obtain | 
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| 468 | diagnostic information from Qt about each plugin it tries to load. Set this | 
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| 469 | variable to a non-zero value in the environment from which your application is | 
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| 470 | launched. | 
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| 471 | */ | 
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